{"id":71742,"date":"2024-10-27T07:35:23","date_gmt":"2024-10-27T06:35:23","guid":{"rendered":"https:\/\/ogrod-powsin.pl\/nauka\/publikacje\/"},"modified":"2026-08-19T08:58:18","modified_gmt":"2026-08-19T06:58:18","slug":"publications","status":"publish","type":"nauka","link":"https:\/\/ogrod.pan.pl\/en\/nauka\/publikacje\/","title":{"rendered":"Publications"},"content":{"rendered":"<p>Od 2020 r. dorobek naukowy jednostki wraz ze spisami publikacji dost\u0119pny jest r\u00f3wnie\u017c w sprawozdaniach rocznych pod <a href=\"https:\/\/ogrod.pan.pl\/serwis\/o-nas\/\">linkiem&nbsp;<\/a><\/p>\n<p>[su_posts template=&#8221;templates\/list-loop.php&#8221; posts_per_page=&#8221;-1&#8243; post_type=&#8221;publikacje&#8221; taxonomy=&#8221;kategorie&#8221; order=&#8221;desc&#8221;]<\/p>\n\n\n<h1 class=\"wp-block-heading\"><a>WYKAZ PUBLIKACJI<\/a> WYDANYCH W ROKU 2025<\/h1>\n\n\n\n<h2 class=\"wp-block-heading\"><a>a)\u00a0<\/a>publikacje w czasopismach naukowych z tzw. listy filadelfijskiej\u00a0<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Gworek B., <strong>Helena Baczewska-D\u0105browska A.<\/strong>, Artyszak A., Samson-Br\u0119k I., Dmuchowski W. 2026. The influence of agricultural tillage practices on soil carbon sequestration, Journal of Water and Land Development. 2026, No. 68 (I\u2013III): 26\u201338. DOI: https:\/\/doi.org\/10.24425\/jwld.2026.156061 (MNiSW=100 pkt.).<\/li>\n\n\n\n<li><strong>Rybczy\u0144ski J., <\/strong>Marczak \u0141., Sk\u00f3rkowska-Telichowska K., Stobiecki M., Szopa J., <strong>Miku\u0142a A. <\/strong>2025 Cell suspension of the tree fern <em>Cyathea smithii <\/em>(J.D. Hooker) and its metabolic potential during cell growth: preliminary studies. Int. J. Mol. Sci. 26, 11683. https:\/\/doi.org\/10.3390\/ijms262311683 (IF=4,9; MNiSW= 140)<\/li>\n\n\n\n<li><strong>Marcinkiewicz J.<\/strong>, <strong>Jura-Morawiec J. <\/strong>2025. Pattern of secondary growth in monocot roots: unveiling longitudinal and cross-sectional variability. Planta 262:36 doi.org\/10.1007\/s00425-025-04744-8 (IF=3,8; MNiSW=100)<\/li>\n\n\n\n<li><strong>Miodek A.<\/strong>, <strong>Miodek A.P.<\/strong>, <strong>Kojs P<\/strong>. 2025. Wood fiber bodies of <em>Robinia pseudoacacia <\/em>increase their transverse surface area without cell wall expansion. Wood Science and Technology 59, 67. doi: 10.1007\/s00226-025-01669-z (IF=3,0; MNiSW=200)<\/li>\n\n\n\n<li><strong>Miodek A., Miodek A.P.,<\/strong> <strong>Kojs P<\/strong>. 2025. Does Axial Growth of Wood Fibres Disturb the Circular Trunk Symmetry in <em>Robinia pseudoacacia<\/em>? The Botanical Review 91: 201-220 https:\/\/doi.org\/10.1007\/s12229-024-09312-5 (IF=3,0; MNiSW=100)<\/li>\n\n\n\n<li><strong>Ruci\u0144ska, A.<\/strong>, <strong>Leszczewska, P.<\/strong>, Boczkowska, M., <strong>Zn\u00f3j, A<\/strong>., Nowosielska, D., Podyma, W. (2025). Between conservation and utilization: Legal frameworks governing crop wild relatives and Habitats Directive species in Poland. Sustainability, 17(21), 9371. <a href=\"https:\/\/doi.org\/10.3390\/su17219371\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.3390\/su17219371<\/a> (IF=3,3 MNiSW=100 pkt)<\/li>\n\n\n\n<li><strong>Ruci\u0144ska, A.<\/strong>, Chwedorzewska, K. J., Bednarek, P. T., Boczkowska, M., Puchalski, J., Androsiuk, P., Czaplicka, E. (2025). Halfway through <em>ex situ<\/em> population genetic lifespan: The case of <em>Cochlearia polonica<\/em>. Biology, 14(6), 681. <a href=\"https:\/\/doi.org\/10.3390\/biology14060681\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.3390\/biology14060681<\/a> (IF=4,0 MNiSW=100 pkt)<\/li>\n\n\n\n<li><strong>Wielog\u00f3rska, M., Ruci\u0144ska, A.<\/strong>, Kloc, Y., &amp; Boczkowska, M. (2025). Long non-coding RNAs in the cold-stress response of horticultural plants: Molecular mechanisms and potential applications. International Journal of Molecular Sciences, section Molecular Plant Sciences. (IF=4,9 MNiSW=140 pkt)<\/li>\n\n\n\n<li>Paduch-Cichal, E., Kuku\u0142a, W., Malewski, T.,<strong> Ruci\u0144ska, A.<\/strong>, Mielniczuk, E., Wit, M., Wakuli\u0144ski, W., &amp; Mirzwa-Mr\u00f3z, E. (2025). Biology and epidemiology of Valdensinia heterodoxa Peyronel in Poland. Acta Scientiarum Polonorum Hortorum Cultus. (IF=1, MNiSW=100 pkt)<\/li>\n\n\n\n<li>Moskal K, Puchta-Jasi\u0144ska M, Bolc P, Motor A, Frankowski R, Pietrusi\u0144ska-Radzio A, <strong>Ruci\u0144ska A,<\/strong> Tomiczak K, Boczkowska M. Why &#8222;Where&#8221; Matters as Much as &#8222;How Much&#8221;: Single-Cell and Spatial Transcriptomics in Plants. Int J Mol Sci. 2025 Dec 7;26(24):11819. doi: 10.3390\/ijms262411819. PMID: 41465249; PMCID: PMC12732828. (IF=4,9 MNiSW=140 pkt)<\/li>\n\n\n\n<li>P\u00e4rtel, M., Tamme, R., Carmona, C.P.,&#8230; <strong>Nowak, A<\/strong>., et al. Global impoverishment of natural vegetation revealed by dark diversity. Nature 641, 917\u2013924 (2025). <a href=\"https:\/\/doi.org\/10.1038\/s41586-025-08814-5\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1038\/s41586-025-08814-5<\/a> (IF=48,5; MNiSW=200)<\/li>\n\n\n\n<li><strong>Nowak, A<\/strong>., \u015awierszcz, S., Nowak, S., <strong>Ruci\u0144ska, A<\/strong>., <strong>Kotowski, M<\/strong>., &amp; Nobis, M. (2025). Molecular insights into vegetation classification: A comparative analysis of standard observations and belowground metabarcoding of the phytocoenosis. Journal Of Vegetation Science (IF=2,7 MNiSW=100 pkt)<\/li>\n\n\n\n<li>Prado-Elias A., Ludwinsky R.H., <strong>Kotowski M<\/strong>., Zabin D.A., Menolli Jr N., et al. 2025. Ethnomycological knowledge of Slavic immigrant descendants in southern Brazil. Journal of Ethnobiology and Ethnomedicine. (IF=3,7; MNiSW=100).<\/li>\n\n\n\n<li><strong>Nowak A<\/strong>., \u015awierszcz S., Nowak S., <strong>Ruci\u0144ska A<\/strong>., <strong>Kotowski M.,<\/strong> Nobis M. 2025. Molecular insights into vegetation classification: a comparative analysis of standard observations and belowground metabarcoding of the phytocoenosis. Journal of Vegetation Science 36(6), e70083. (IF=2,7; MNiSW=100).<\/li>\n\n\n\n<li>D\u00edaz Cando P.E., Fenesi A., Sonkoly J., Perera P.C.D., <strong>T\u00f6r\u00f6k P.<\/strong> 2025. Enemy behind the gates?: Predicted climate change and land-use intensification likely speed up C4 grass invasions in Europe. Journal of Vegetation Science 36(2), e70023. (IF=2,7; MNiSW=100).<\/li>\n\n\n\n<li>\u015awierszcz S., <strong>Kotowski M<\/strong>., Hebda G., <strong>Nowak A<\/strong>. 2025. Climate-driven alterations reshape flower coloration and possible plant-pollinator interactions in wet grasslands. Agriculture, Ecosystems &amp; Environment 392, 109772. (IF=6,4; MNiSW=200).<\/li>\n\n\n\n<li><strong>Nowak A.<\/strong>, \u015awierszcz S., <strong>Kotowski M<\/strong>., Hebda G., Miszalski Z., Korna\u015b A., et al. 2025. First insights into functional and taxonomic changes after three years of simulated extreme events in wet grasslands. Global Ecology and Conservation 61, e03629. (IF=3,4; MNiSW=100).<\/li>\n\n\n\n<li><strong>Kotowski M.<\/strong>, Nowak A. 2025. Tracing vegetation changes through the testimony of early settlers: A spatio-temporal analysis of plant-based place names as ecological evidence. Global Ecology and Conservation 59, e03552. (IF=3,4; MNiSW=100).<\/li>\n\n\n\n<li>Hazhir S., Erfanzadeh R., Pirkhezri S.Z., Razavi B.S., <strong>T\u00f6r\u00f6k P.<\/strong> 2025. Responses of soil seed banks and soil microbial activity to grazing exclusion in cold semiarid grasslands. Restoration Ecology 33(2), art. 14245. (IF=2,7; MNiSW=70).<\/li>\n\n\n\n<li>Frei K., T\u00f6lgyesi C., Kelemen A., B\u00e1tori Z., et al., <strong>T\u00f6r\u00f6k P.<\/strong> 2025. Herb layer vegetation patterns of silvopastoral systems: the interactive role of succession, disturbance and seed bank. Agroforestry Systems 99. DOI: 10.1007\/s10457-025-01364-9. (IF=2,2; MNiSW=70).<\/li>\n\n\n\n<li>T\u00f6r\u0151-Szijgy\u00e1rt\u00f3 V., <strong>T\u00f6r\u00f6k P.<\/strong>, T\u00f3th K., et al. 2025. Inconsistent relationships detected between seed size, shape and persistence for different plant functional groups in the Pannonian flora. Annals of Botany. DOI: 10.1093\/aob\/mcaf322. (IF=3,6; MNiSW=100).<\/li>\n\n\n\n<li>Sonkoly J., Moln\u00e1r A., <strong>T\u00f6r\u00f6k P.<\/strong>, S\u00fcveges K., Tak\u00e1cs A. 2025. Nurseries and garden centres act as hubs of alien plant invasions: a case study from Hungary. Preslia. (IF=2,9; MNiSW=100).<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>b)\u00a0<\/a>inne recenzowane publikacje w czasopismach zagranicznych i\u00a0polskich<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Sonkoly J., <strong>T\u00f6r\u00f6k P.<\/strong> 2025. Origin of plant trait data matters: shared species of Northwestern Europe and the Pannonian Ecoregion have different trait values in the two regions. Acta Botanica Hungarica 67(4): 443\u2013455. DOI: 10.1556\/034.67.2025.4.5. (IF=-; MNiSW=40).<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>c)\u00a0monografie, rozdzia\u0142y w monografiach<\/a><\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li><strong>Kotowski M.,<\/strong> Nowak S., <strong>Nowak A.<\/strong> 2025. Ethnobotany of Paddy Plants \u2013 Traditional Knowledge, Diversity and Conservation. Volume I: Abutilon\u2013Cleome. (IF=-; MNiSW=80).<\/li>\n\n\n\n<li><strong>Nowak A.,<\/strong> Nobis M., Nowak S., <strong>Kotowski M.<\/strong>, Klichowska E., Nobis A., et al. 2025. Vegetation of Middle Asia with a special reference to Tajikistan. (IF=-; MNiSW=80)<\/li>\n\n\n\n<li>Nowak P., Nowak S., <strong>Kotowski M., Nowak A<\/strong>., et al. 2025. Bernhard Grzimek. Obserwator przyrody \u015al\u0105ska, obro\u0144ca przyrody \u015bwiata \/ A witness to Silesian nature, a guardian of the world\u2019s wildlife. ISBN 978-83-961853-9-6 (IF=-; MNiSW=-).<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>d)ksi\u0105\u017cki popularnonaukowe<\/a><\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Szewczyk E. 2025. Azalie i R\u00f3\u017caneczniki w Ogrodzie Botanicznym Polskiej Akademii Nauk, Wyd. Polska Akademia Nauk Ogr\u00f3d Botaniczny \u2013 Centrum Zachowania R\u00f3\u017cnorodno\u015bci Botanicznej w Powsinie. ISBN 978-83-961853-7-2<\/li>\n<\/ol>\n\n\n\n<h1 class=\"wp-block-heading\"><a>WYKAZ PUBLIKACJI<\/a> WYDANYCH DRUKIEM W ROKU 2024<\/h1>\n\n\n\n<h2 class=\"wp-block-heading\"><a>a)\u00a0<\/a>publikacje w czasopismach naukowych z tzw. listy filadelfijskiej\u00a0<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>G\u00f3rska, E. B., St\u0119pie\u0144, W., Hewelke, E., Lata, J. C., Gworek, B., Gozdowski, D., Sas-Paszt L., Bazot S., Lisek A., Gradowski M., <strong>Baczewska-D\u0105browska A.H., <\/strong>Dobrzy\u0144ski, J. 2024. Response of soil microbiota to various soil management practices in 100-year-old agriculture field and identification of potential bacterial ecological indicator. <em>Ecological Indicators<\/em>, <em>158<\/em>, 111545. <a href=\"https:\/\/doi.org\/10.1016\/j.ecolind.2024.111545\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1016\/j.ecolind.2024.111545<\/a>. (IF=7.0; MNiSW =200 pkt)<\/li>\n\n\n\n<li>Dmuchowski, W., <strong>Baczewska-D\u0105browska, A.H<\/strong>., Gworek, B. 2024. The role of temperate agroforestry in mitigating climate change: A review. <em>Forest Policy and Economics<\/em>, <em>159<\/em>, 103136. <a href=\"https:\/\/doi.org\/10.1016\/j.forpol.2023.103136\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1016\/j.forpol.2023.103136<\/a>. (IF=4.0; MNiSW =100 pkt).<\/li>\n\n\n\n<li>Dabrowski P., Ma\u0142uszy\u0144ska I., Ma\u0142uszy\u0144ski M.J.; Pawlu\u015bkiewicz B.; Gnatowski T.; <strong>Baczewska-D\u0105browska A.H<\/strong>.; Kalaji H.M. 2024, Photosynthetic Efficiency of Plants as an Indicator of Tolerance to Petroleum-Contaminated Soils. <em>Sustainability<\/em> 2024, 16, 10811. <a href=\"https:\/\/doi.org\/10.3390\/su16241081\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.3390\/su16241081<\/a>. (IF=3.3; MNiSW =100 pkt).<\/li>\n\n\n\n<li>Gworek B., <strong>Baczewska-D\u0105browska A.H<\/strong>., Kalinowski R., G\u00f3rska E.B., Rekosz-Burlaga H., Olejniczak I., Chmielewski J., Dmuchowski W. 2024. Ecological risk assessment based on the TRIAD approach in an area contaminated by the metallurgical and mining industries. Journal of Elementology, 29(1). https:\/\/ oi.org\/10.5601\/jelem.2023.28.4.2439. (IF=0.7; MNiSW=70 pkt)<strong> <\/strong><\/li>\n\n\n\n<li><strong>Bia\u0142osk\u00f3rska M, Ruci\u0144ska A,<\/strong> Boczkowska M. Molecular Mechanisms Underlying Freezing Tolerance in Plants: Implications for Cryopreservation. International Journal of Molecular Sciences. 2024; 25(18):10110. <a href=\"https:\/\/doi.org\/10.3390\/ijms251810110\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.3390\/ijms251810110<\/a> (IF=5.6; MNiSW=140 pkt)<\/li>\n\n\n\n<li><strong>Grzyb, M<\/strong>., Tomaszewicz, W., Cio\u0107, M. Paw\u0142owska, B., <strong>Miku\u0142a, A<\/strong>. 2024. Temperature and LED lightning affect the regeneration of somatic embryo-derived sporophytes on the internode explants of the tree fern <em>Cyathea delgadii<\/em> Sternb.. Plant Cell Tissue and Organ Culture 158: 20. <ins><a href=\"https:\/\/doi.org\/10.1007\/s11240-024-02815-4\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1007\/s11240-024-02815-4<\/a><\/ins> (IF=2.300, MNiSW=100 pkt)<\/li>\n\n\n\n<li><strong>Grzyb, M.<\/strong>, Sujkowska-Rybkowska, M., <strong>Miku\u0142a, A.<\/strong> <strong>2024.<\/strong> Cell wall remodeling and callose deposition during the embryogenic transition in the tree fern <em>Cyathea delgadii<\/em> Sternb. Plant Cell, Tissue and Organ Culture 156, 30<a href=\"https:\/\/doi.org\/10.1007\/s11240-023-02654-9\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1007\/s11240-023-02654-9<\/a> (IF=2,300; MNiSW=100 pkt)<\/li>\n\n\n\n<li>Tomaszewicz, W., <strong>Grzyb, M.<\/strong>, Sobczak, M., <strong>Miku\u0142a, A.<\/strong> <strong>2024.<\/strong> Sucrose-induced stress and initial days after explant excision affect the pattern and efficiency of somatic embryogenesis in the tree fern <em>Cyathea delgadii<\/em> Sternb. Plant Cell Tissue and Organ Culture 156: 84. <ins><a href=\"https:\/\/link.springer.com\/article\/10.1007\/s11240-024-02701-z\" target=\"_blank\" rel=\"noopener\">https:\/\/link.springer.com\/article\/10.1007\/s11240-024-02701-z<\/a><\/ins> (IF=2.300, MNiSW=100 pkt)<\/li>\n\n\n\n<li><strong>Marcinkiewicz J.<\/strong>, <strong>Jura-Morawiec J. <\/strong>2024. New insight into secondary growth in roots of monocotyledons using the example of the dragon tree, <em>Dracaena draco<\/em> L. Brazilian Journal of Botany doi.org\/10.1007\/s40415-024-00997-x (IF=1,6; MNiSW=40 pkt)<\/li>\n\n\n\n<li>Markowski M, Czarnomska Z, <strong>Tomiczak K, Miku\u0142a A,<\/strong> Granica S, Podwyszy\u0144ska M, Szypu\u0142a WJ. 2024 The influence of cryopreservation via encapsulation-dehydration on growth kinetics, embryogenic potential and secondary metabolite production of cell suspension cultures of <em>Gentiana capitata<\/em> Buch.-Ham. ex D.Don and <em>Gentiana decumbens<\/em> L.f. Industrial Crops &amp; Products 212, 118349. <a href=\"https:\/\/doi.org\/10.1016\/j.indcrop.2024.118349\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1016\/j.indcrop.2024.118349<\/a> (IF= 5,600; MNiSW= 200 pkt)<\/li>\n\n\n\n<li><strong>Miodek A.<\/strong>, <strong>Miodek A.P.<\/strong>, <strong>Kojs P<\/strong>. 2025. Interplay between vessel element development and frequency of cambial cell divisions in broadleaved trees. Trees \u2013 Structure and Function39, 13. doi: 10.1007\/s00468-024-02590-x (IF=2,100; MNiSW=100 pkt)<\/li>\n\n\n\n<li><strong>Miodek, A., Miodek, A.P. &amp; Kojs, P.<\/strong> 2024. Does Axial Growth of Wood Fibres Disturb the Circular Trunk Symmetry in <em>Robinia pseudoacacia<\/em>? The Botanical Review (IF=2.800; MNiSW=100 pkt) (DOI: 10.1007\/s12229-024-09312-5).<\/li>\n\n\n\n<li>\u015aliwi\u0144ska, A.A, <strong>Tomiczak, K.<\/strong>, Obr\u0119bski, M., Wile\u0144ska, B., Kie\u0142kiewicz, R.M., Podwyszy\u0144ska, M., Ziele\u017anicka, J.M., <strong>Miku\u0142a, A<\/strong>., Syk\u0142owska-Baranek, K. 2024. An effective cryobanking approach preserving the genetic, physiological and phytochemical stability of <em>Polyscias filicifolia<\/em> Bailey hairy roots. Industrial Crops &amp; Products 208, 117845. <a href=\"https:\/\/doi.org\/10.1016\/j.indcrop.2023.117845\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1016\/j.indcrop.2023.117845<\/a> (IF= 5,600; MNiSW= 200 pkt)<\/li>\n\n\n\n<li>Sinaga P., Klichowska E., <strong>Nowak A.,<\/strong> Nobis M. 2024. Hybridization and introgression events in cooccurring populations of closely related grasses (Poaceae: Stipa) in high mountain steppes of Central Asia. Plos ONE; e0298760 DOI: 10.1371\/journal.pone.0298760 (IF=2.9; MNiSW=100 pkt)<\/li>\n\n\n\n<li>Preislerov\u00e1 Z., Corrado M., Loidi J., <strong>Nowak A.,<\/strong> &#8230;\u0106u\u0161terevska R. 2024. Structural, ecological and biogeographical attributes of European vegetation alliances. Applied Vegetation Science 27(1): e12766 DOI: 10.1111\/avsc.12766 (IF=2.0; MNiSW=100 pkt)<\/li>\n\n\n\n<li>Wr\u00f3bel A., Klichowska E., <strong>Nowak A.<\/strong>, Nobis M. 2024. Alpine Extremophytes in Evolutionary Turmoil: Complex Diversification Patterns and Demographic Responses of a Halophilic Grass in a Central Asian Biodiversity Hotspot. Systematic Biology 73(2): 263\u2013278. DOI: 10.1093\/sysbio\/syad073 (IF=6.1; MNiSW=200 pkt)<\/li>\n\n\n\n<li>Vintsek L., Klichowska E., <strong>Nowak A.,<\/strong> Nobis M. 2024. Insight into the phylogeny and responses of species from the genus Sergia (Campanulaceae) to the climate changes predicted for the Mountains of Central Asia (a world biodiversity hotspot). BMC Plant Biology 24: e228. DOI: 10.1186\/s12870-024-04938-4 (IF=4.3; MNiSW=140 pkt)<\/li>\n\n\n\n<li><strong>Nowak A., \u015awierszcz S<\/strong>., Nowak S., Nobis A., Klichowska E., Nobis M. 2024. Conspectus of the vegetation types of Tajikistan and adjacent areas with special focus on phytosociological classes. Acta Societatis Botanicorum Poloniae 93: 191675. DOI: 10.5586\/asbp\/191675 (IF=1.1; MNiSW=70 pkt)<\/li>\n\n\n\n<li>Volkova P.A., Ivanova M.O., Boboev M., <strong>Nowak A.<\/strong>, &#8230; Bobrov A.A. 2024. Are aquatic plants really endangered in Tajikistan (core area of the Mountains of central Asia global biodiversity hotspot)? Journal of Asia-Pacific Biodiversity 17: 769\u2014779. DOI: 10.1016\/j.japb.2024.04.009 (IF=0.6; MNiSW=40 pkt)<\/li>\n\n\n\n<li><strong>Kotowski M., \u015awierszcz S.<\/strong>, Nobis M., &#8230; <strong>Nowak A.<\/strong> 2024. People and plants -close relationships at the crossroads of the Silk Roads: the case of Tajikistan. Ethnobotany Research and Applications 27:1-19. DOI: 10.32859\/era.27.2.1-19 (IF=1.0; MNiSW=70 pkt)<\/li>\n\n\n\n<li>Nowak S, <strong>\u015awierszcz S,<\/strong> Nobis M, Swacha G, <strong>Nowak A.<\/strong> 2024. Chionophilous vegetation in the high alpine and subnival belts of the Pamir-Alai and western Tian Shan Mts. Acta Societatis Botanicorum Poloniae 93: 190173. DOI: 10.5586\/asbp\/190173 (IF=1.1; MEiN=70 pkt)<\/li>\n\n\n\n<li>Knollov\u00e1 I, Chytr\u00fd M, Bruelheide H, Dullinger S, Jandt U, &#8230; <strong>\u015awierszcz S,<\/strong> \u2026 Essl F. 2024. ReSurveyEurope: A database of resurveyed vegetation plots in Europe. Journal of Vegetation Science 35. DOI: 10.1111\/jvs.13235 (IF=2.2; MEiN=100 pkt)<\/li>\n\n\n\n<li>Swacha G, Radu\u0142a MW, Jewticz S, Kusak B, <strong>\u015awierszcz S. <\/strong>2024. Varying patterns of taxonomic and functional plant composition and diversity across different types of urban and rural grasslands. Land Degradation and Development 35: 4997\u20135010. DOI: 10.1002\/ldr.5273 (IF=3.6; MEiN=200 pkt)<\/li>\n\n\n\n<li><strong>\u015awierszcz S, <\/strong>Czarniecka-Wiera M, Szymura TH, Szymura M. 2024. From invasive species stand to species-rich grassland: Long-term changes in plant species composition during Solidago invaded site restoration. Journal of Environmental Management 353: 120216. DOI: 10.1016\/j.jenvman.2024.120216 (IF=8.0; MEiN=200 pkt)<\/li>\n\n\n\n<li><strong>T\u00f6r\u00f6k, P<\/strong>., Espinoza, A., T\u00f3th, K., D\u00edaz, C., Guallichico, S., Buday, A., H\u00e1benczyus, A., T\u00f6r\u0151-Szijgy\u00e1rt\u00f3, V., Kovacsics-V\u00e1ri, G., T\u00f6lgyesi, C., T\u00f3thm\u00e9r\u00e9sz, B., Sonkoly, J. 2024. Accumulated soil seed bank of the invasive sand dropseed (Sporobolus cryptandrus) poses a challenge for its suppression. Land Degrad. Dev. 35 (13): 4105-4120. (IF=3.6; MNiSW=200 pkt)<\/li>\n\n\n\n<li>Erd\u0151s, L., \u00d3nodi, G., Ho, K., Tan\u00e1cs, E., Akinyi, R., <strong>T\u00f6r\u00f6k, P<\/strong>., T\u00f6lgyesi, C., B\u00e1tori, Z., Kr\u00f6el. 2024. Between-year weather differences and long-term environmental trends both contribute to observed vegetation changes in a plot resurvey study. Ecol. Evol. 14(9): 1-14. (IF=2.3; MNiSW=100 pkt)<\/li>\n\n\n\n<li>Hazhir, S., Erfanzadeh, R., Ghelichnia, H., Razavi, B., <strong>T\u00f6r\u00f6k, P. <\/strong>2024. Effects of livestock grazing on soil seed banks vary between regions with different climates. Agric. Ecosyst. Environ. 364: 1-8. (IF=6.0; MNiSW=200 pkt)<\/li>\n\n\n\n<li>Erd\u0151s, L., Ho, K., Bede-Fazekas, \u00c1., Kr\u00f6el, -., T\u00f6lgyesi, C., B\u00e1tori, Z., <strong>T\u00f6r\u00f6k, P.<\/strong>: Environmental filtering is the primary driver of community assembly in forest-grassland mosaics: a case study based on CSR strategies. J. Veg. Sci. 35 (1), 1-10, 2024. (IF=2.2; MNiSW=100 pkt)<\/li>\n\n\n\n<li><strong>T\u00f6r\u00f6k, P.<\/strong>, Lindborg, R., Eldridge, D., Pakeman, R.: Grazing effects on vegetation: Biodiversity, management, and restoration. Appl. Veg. Sci. 27 1-8, 2024. (IF=2.0; MNiSW=100 pkt)<\/li>\n\n\n\n<li>Buday, A., Sonkoly, J., Moln\u00e1r, A., T\u00f3th, K., T\u00f6r\u0151-Szijgy\u00e1rt\u00f3, V., Madar, S., K\u00e1rolyi, E., Cando, P., Kovacsics-V\u00e1ri, G., T\u00f3thm\u00e9r\u00e9sz, B., <strong>T\u00f6r\u00f6k, P<\/strong>.: Grime&#8217;s ecological strategies reveal contrasting patterns in alkaline and loess grasslands. Glob. Ecol. Conserv. 54 1-13, 2024. (IF=3.5; MNiSW=100 pkt)<\/li>\n\n\n\n<li>Kovacsics-V\u00e1ri, G., Sonkoly, J., T\u00f3th, K., Buday, A., D\u00edaz-Cando, P., T\u00f6r\u0151-Szijgy\u00e1rt\u00f3, V., Balogh, N., Guallichico-Suntaxi, L., Espinoza-Ami, F., Matus, G., T\u00f3thm\u00e9r\u00e9sz, B., <strong>T\u00f6r\u00f6k, P. <\/strong>2024. High species richness of sheep-grazed sand pastures is driven by disturbance-tolerant and weedy short-lived species. Ecol. Evol. 14 (9), 1-12. (IF=2.3; MNiSW=100 pkt)<\/li>\n\n\n\n<li>Krasznai, E., B-B\u00e9res, V., Lerf, V., V\u00e1rb\u00edr\u00f3, G., Abonyi, A., <strong>T\u00f6r\u00f6k, P.,<\/strong> Borics, G. 2024. Linear water column stratification and euphotic depth determine the number of phytoplankton taxa that create biomass peaks in a hypertrophic oxbow lake. Hydrobiologia. 851 (4): 767-783. (IF=2.2; MNiSW=100 pkt)<\/li>\n\n\n\n<li>Hazhir, S., Erfanzadeh, R., Pirkhezri, S., Razavi, B., <strong>T\u00f6r\u00f6k, P.<\/strong> 2024. Responses of soil seed banks and soil microbial activity to grazing exclusion in cold semiarid grasslands. Restor. Ecol. [Epub ahead of print] (-), 1-11. (IF=2.8; MNiSW=70 pkt)<\/li>\n\n\n\n<li>T\u00f6lgyesi, C., Helm, A., Ratnam, J., Silveira, F., <strong>T\u00f6r\u00f6k, P. <\/strong>2024. Restoration of open ecosystems in the face of climate change. Glob. Ecol. Conserv. 53 1-13. (IF=3.5; MNiSW=100 pkt)<\/li>\n\n\n\n<li>K\u00f3kai, Z., Borics, G., Cs\u00e9pes, E., Luk\u00e1cs, \u00c1., <strong>T\u00f6r\u00f6k, P.<\/strong>, Krasznai, E., B\u00e1csi, I., B-B\u00e9res, V. 2024. Role of microhabitats in shaping diversity of periphytic diatom assemblages. Hydrobiologia. 851 (4), 959-972. (IF=2.2; MNiSW=100 pkt)<\/li>\n\n\n\n<li><strong>T\u00f6r\u00f6k, P<\/strong>., Teleki, B., Erd\u0151s, L., Buday, A., Ruprecht, E., T\u00f3thm\u00e9r\u00e9sz, B. 2024. Scale dependency of taxonomic and functional diversity in pristine and recovered loess steppic grasslands. Sci. Total Environ. 949 1-12. (IF=8.2; MNiSW=200 pkt)<\/li>\n\n\n\n<li>Pi\u0142syk, S., Perli\u0144ska-Lenart, U., Janik, A., Skalmowska, P., <strong>Zn\u00f3j, A.<\/strong>, Gawor, J., &#8230; &amp; Kruszewska, J. S. (2024). Native and Alien Antarctic Grasses as a Habitat for Fungi. International Journal of Molecular Sciences, 25(15), 8475.\u00a0 Impact Factor: 4.9 (2023); 5-Year (IF=5.6;MNiSW=140 pkt)<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>b)<\/a> inne recenzowane publikacje w czasopismach zagranicznych i\u00a0polskich<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li><strong>Miku\u0142a, A.<\/strong>, Marciszewska, K. 2024. Rok Botaniki w stulecie Polskiego Towarzystwa Botanicznego. Wiadomo\u015bci Botaniczne. <a href=\"https:\/\/doi.org\/10.5586\/wb\/195\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/wb\/195<\/a> (MNiSW=40 pkt)<\/li>\n\n\n\n<li><strong>Kotowski M, \u015awierszcz S, <\/strong>Nobis M, Laldjebaev M, Palavonshanbieva B, <strong>Nowak A<\/strong>. 2024. People and plants-close relationships at the crossroads of the Silk Roads: the case of Tajikistan. Ethnobotany Research and Applications 27: 1\u201319. DOI: 10.32859\/era.27.2.1-19 (MEiN=70 pkt)<\/li>\n\n\n\n<li><strong>Nowak A, \u015awierszcz S, <\/strong>Naqinezhad A, Nowak S, Nobis M. 2024. The Pistacietea verae: a new class of open, deciduous woodlands in Middle and Southwestern Asia. Vegetation Classification and Survey 5: 109\u2013126. DOI: 10.3897\/VCS.104841 (MEiN=20 pkt)<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>c)\u00a0monografie, rozdzia\u0142y w monografiach<\/a><\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li><strong>Kotowski, M.<\/strong>, &amp; Obidzi\u0144ski, A. (2024). Puszcza Kurpiowska. In A. Obidzi\u0144ski (Ed.), <em>\u015aladami mistrz\u00f3w. Miejsca fascynacji prekursor\u00f3w polskiej geobotaniki<\/em> (pp. 269\u2013275). Polskie Towarzystwo Botaniczne i Wydawnictwo SGGW. <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-3-6\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-3-6<\/a><\/li>\n\n\n\n<li><strong>Nowak, A<\/strong>., &amp; Nowak, S. (2024). G\u00f3ra Gipsowa na \u015al\u0105sku Opolskim. In A. Obidzi\u0144ski (Ed.), <em>\u015aladami mistrz\u00f3w. Miejsca fascynacji prekursor\u00f3w polskiej geobotaniki<\/em> (pp. 599\u2013607). Polskie Towarzystwo Botaniczne i Wydawnictwo SGGW. <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-3-6\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-3-6<\/a><\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>d) ksi\u0105\u017cki popularnonaukowe<\/a><\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Szurkowski L. 2024. Theatrum Botanicum. Wyd. Polska Akademia Nauk Ogr\u00f3d Botaniczny \u2013 Centrum Zachowania R\u00f3\u017cnorodno\u015bci Biologicznej w Powsinie. ISBN 978-83-961853-5-8<\/li>\n\n\n\n<li><strong>Misiak K.<\/strong> (red.) i in., <strong>Ko\u015bcielak A., Szewczyk E<\/strong>. (wsp\u00f3\u0142autor) 2024. 50 lat Ogrodu Botanicznego Polskiej Akademii Nauk. Historia Kolekcji, wydanie I, (221 ss, 435 barwnych ilustracji). Wyd. Polska Akademia Nauk Ogr\u00f3d Botaniczny \u2013 Centrum Zachowania R\u00f3\u017cnorodno\u015bci Biologicznej w Powsinie. ISBN 978-83-961853-6-5<\/li>\n\n\n\n<li>Praca zbiorowa cz\u0142onk\u00f3w Polskiego Towarzystwa Dendrologicznego. <strong>Ko\u015bcielak A.<\/strong> (wsp\u00f3\u0142autor) 2024. Polskie D\u0119by. 100 d\u0119b\u00f3w na 100-lecie Polskiego Towarzystwa Dendrologicznego. Wydanie I, (136 ss, 186 barwnych ilustracji). Wyd. Polskie Towarzystwo Dendrologiczne. ISBN 978-83-964973-0-7<\/li>\n<\/ol>\n\n\n\n<h1 class=\"wp-block-heading\"><a>WYKAZ PUBLIKACJI<\/a> WYDANYCH DRUKIEM W ROKU 2023<\/h1>\n\n\n\n<h2 class=\"wp-block-heading\"><a>a)&nbsp;<\/a>publikacje w czasopismach naukowych z tzw. listy filadelfijskiej&nbsp;<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Dmuchowski P., Dmuchowski W., Baczewska-D\u0105browska A.H., Gworek B. 2023. Environmental, social, and governance (ESG) model; impacts and sustainable investment\u2013Global trends and Poland&#8217;s perspective. Journal of Environmental Management, 329, 117023. https:\/\/doi.org\/10.1016\/j.jenvman.2022.117023 (MEiN=200 pkt.; IF=8.700)<\/li>\n\n\n\n<li>D\u0105browski P., Keutgen A.J., Keutgen N., Sierka E., Baczewska-D\u0105browska, A.H., Mojski J., Pawlu\u015bkiewicz B., Sieczko L., Kalaji, H. M. 2023. Photosynthetic efficiency of perennial ryegrass (Lolium perenne L.) seedlings in response to Ni and Cd stress. Scientific Reports, 13(1), 5357. https:\/\/doi.org\/10.1038\/s41598-023-32324-x (MEiN=140 pkt.; IF=4.600).<\/li>\n\n\n\n<li>Dmuchowski W., Baczewska-D\u0105browska A.H., Gworek B. 2023. The role of temperate agroforestry in mitigating climate change: A review. 2023. Forest Policy and Economics, 103136. https:\/\/doi.org\/10.1016\/j.forpol.2023.103136. (MEiN=100pkt.; IF=4.000).<\/li>\n\n\n\n<li>Dmuchowski W., Baczewska-D\u0105browska A.H., Gworek B. 2023. Impact of agriculture on N2O emissions: A review. Journal of Elementology, 28(4), 917-935. http:\/\/doi.org\/10.5601\/jelem.2023.28.2.2417 (MEiN=140 pkt., IF=0.800).<\/li>\n\n\n\n<li>Baczewska-D\u0105browska, A.H., Gworek B., Dmuchowski W. 2023. The Use of Mosses in Biomonitoring of Air Pollution in the Terrestrial Environment: A Review. Environmental Protection and Natural Resources, 34(2): 19-30. https:\/\/doi.org\/10.2478\/oszn-2023-0005. (MEiN=100 pkt.).<\/li>\n\n\n\n<li>Grzyb, M., Sujkowska\u2011Rybkowska, M., Miku\u0142a, A. Cell wall remodeling and callose deposition during the embryogenic transition in the tree fern Cyathea delgadii Sternb. Plant Cell, Tissue and Organ Culture 156:30. https:\/\/doi.org\/10.1007\/s11240-023-02654-9 (MEiN=100, IF=3,000)<\/li>\n\n\n\n<li>Tomiczak, K., Makowski, D., Sliwinska, E., Miku\u0142a, A. 2023. The development of an in vitro propagation and conservation system for the endangered serpentine fern Asplenium cuneifolium Viv. Plant Cell, Tissue and Organ Culture 154(1): 161\u2013175. https:\/\/doi.org\/10.1007\/s11240-023-02524-4. (MEiN=100, IF=3,000)<\/li>\n\n\n\n<li>W\u0142och W., Iqbal M., Jura-Morawiec J. 2023. Calculating the growth of vascular cambium in woody plants as the cylindrical surface. The Botanical Review 89: 237-249. doi.org\/10.1007\/s12229-023-09291-z (MEiN=100 pkt., IF= 4,0)<\/li>\n\n\n\n<li>Tulik M., Jura-Morawiec J. 2023. An arrangement of secretory cells involved in the formation and storage of resin in tracheid-based secondary xylem of arborescent plants. Frontiers in Plant Science 14:1268643. doi.org\/10.3389\/fpls.2023.1268643 (MEiN=100 pkt, IF= 5,6)<\/li>\n\n\n\n<li>Kojs P., Miodek A., Miodek A.P., W\u0142och W. 2023. Vascular cambium \u2013 between the hammer and the anvil: a tensile stress hypothesis on the mechanism of radial growth of broadleaved trees. Forests 14(4): 823. Doi: 10.3390\/f14040823 (MEiN=100 pkt., IF= 2.9)<\/li>\n\n\n\n<li>Monder M., B\u0105belewski P., So\u0142tan S. 2023. Diversity in anatomical features of rose rootstock root necks: Rosa canina 'Inermis&#8217;, \u2018Pf\u00e4nder\u2019, \u2018Schmid&#8217;s Ideal\u2019, Rosa laxa Retz and Rosa multiflora Thunb. Scientia Horticulturae 0304-4238 1879-1018316:1-15. (IF= 4,3; MEiN=140)<\/li>\n\n\n\n<li>Ruci\u0144ska A., Gasek A., Podlasiak J., Bederska-B\u0142aszczyk M., Dreher M., Ranc H. Kolekcja Ro\u015blin G\u00f3rskich na ni\u017cu. 20 lat praktyki w uprawie ro\u015blin g\u00f3rskich w PAN Ogrodzie Botanicznym \u2014 Centrum Zachowania R\u00f3\u017cnorodno\u015bci Biologicznej w Powsinie 2023. Kosmos Tom 72(2):179\u2013186. DOI: https:\/\/doi.org\/10.36921\/kos.2023_2938 (MEiN=20)<\/li>\n\n\n\n<li>Targo\u0144ska-Karasek M., Kwiatek M., Groszyk J., Walczewski J., Kowalczyk M., Pawelec S., Boczkowska M., Ruci\u0144ska A. 2023. Characteristic of the gene candidate SecARS encoding alkylresorcinol synthase in Secale. Mol Biol Rep 50, 8373\u20138383 https:\/\/doi.org\/10.1007\/s11033-023-08684-y (IF=2.8 MEiN=70)<\/li>\n\n\n\n<li>Nobis M., Wr\u00f3bel S., Klichowska E., Nowak A., Wr\u00f3bel A., Nobis A., Paszko B., \u015awierszcz S., Chen W.L., Kauzal P., Krzempek M., Liu B., Nowak S., Piwowarczyk R., Pedraja \u00d3.S., Zi\u0119ba A. 2023. New national and regional plant records: Contribution to the flora of the Old World countries. Acta Societatis Botanicorum Poloniae 92, 162050. DOI: 10.5586\/asbp\/162050 (IF=1; MEiN=140)<\/li>\n\n\n\n<li>Nowak A., \u015awierszcz S., Nowak S., Nobis M. 2023. High altitude semi-deserts and desert steppes in the eastern Pamir-Alai and western Tian Shan Mountains (Tajikistan, Kyrgyzstan). Phytocoenologia 51, 331-356. DOI: 10.1127\/phyto\/2023\/0404 (IF=1; MEiN=70)<\/li>\n\n\n\n<li>Nowak A., \u015awis\u0142owski P., \u015awierszcz S., Nowak S., Rajfur M., Wac\u0142awek M. 2023. Ecovoltaics &#8211; A Truly Ecological and Green Source of Renewable Goods. Ecological Chemistry and Engineering S 30, 315-332. DOI: 10.2478\/eces-2023-0032 (IF=1,9; MEiN=200)<\/li>\n\n\n\n<li>Swacha G., \u015awierszcz S., Nowak S., Nobis M., Nowak A. 2023. Classification of alpine grasslands in the western Tian Shan and northern Pamir-Alai Mountains (Kyrgyzstan and Tajikistan, Middle Asia). Acta Societatis Botanicorum Poloniae 92, 169036. DOI: 10.5586\/asbp\/169036 (IF=1; MEiN=140)<\/li>\n\n\n\n<li>\u015awierszcz S., Nobis M., Swacha G., Nowak S., Nowak A. 2023. Syntaxonomic classification of subalpine forb steppes in the Pamir-Alai Mountains (Tajikistan, Middle Asia). Vegetation Classification and Survey 4, 291-317. DOI: 10.3897\/VCS.102634 (IF=0; MEiN=20)<\/li>\n\n\n\n<li>Sharifian, A., Gantuya, B., Wario, H. T., Kotowski, M. A., Barani, H., Manzano, P., \u2026 &amp; Moln\u00e1r, Z. (2023). Global principles in local traditional knowledge: a review of forage plant-livestock-herder interactions. Journal of Environmental Management, 328, 116966. (MEiN=200 pkt.; IF=8.7)<\/li>\n\n\n\n<li>Kotowski, M., Kotowska, D., Bir\u00f3, M., Babai, D., Sharifian, A., Szentes, S., \u2026 &amp; Moln\u00e1r, Z. (2023). Change in European Forage and Fodder Plant Indicator Sets over the Past 250 Years. Rangeland Ecology &amp; Management, 88, 159-173. (MEiN=100; pkt.; IF=2.3)<\/li>\n\n\n\n<li>Wr\u00f3bel A., Klichowska E., Nowak A., Nobis M. 2023. Alpine Extremophytes in Evolutionary Turmoil: Complex Diversification Patterns and Demographic Responses of a Halophilic Grass in a Central Asian Biodiversity Hotspot. Systematic Biology in print DOI: 10.1093\/sysbio\/syad073 (IF=6.5; MEiN=200)<\/li>\n\n\n\n<li>Gallou A., Jump A.S., Lynn J.S., Field R., Irl S.D.H., Steinbauer M.J., Beierkuhnlein C., Chen J-Ch., Chou Ch.-H., Hemp A., Kidane Y., K\u00f6nig Ch., Kreft H., Naqinezhad A., Nowak A., Nuppenau J.-N., Trigas P., Price J.P., Roland C.A., Schweiger A.H., Weigelt P., Flantua S.G.A. &amp; Grytnes J.-A. 2023. Diurnal temperature range as a key predictor of plants\u2019 elevation ranges globally. Nature Communications 14: 7890 (IF=16.6; MEiN=200)<\/li>\n\n\n\n<li>Laughlin D.C., Siefert A., Fleri J.R., Tumber-D\u00b4avila S.J., \u2026 Nowak A\u2026.. Bruelheide H. 2023. Rooting depth and xylem vulnerability are independent woody plant traits jointly selected by aridity, seasonality, and water table depth. New Phytologist 240:1774-1787. DOI: 10.1111\/nph.19276 (IF=9.4; MEiN=140)<\/li>\n\n\n\n<li>Nobis M., Klichowska E., Vintsek L., Wr\u00f3bel A., Nobis A., Zalewska-Ga\u0142osz J., Nowak A. 2023. Evolutionary response of cold-adapted chasmophytic plants to Quaternary climatic oscillations in the Mountains of Central Asia (a world hotspot of biodiversity) (Poaceae, Pooideae). Diversity and Distributions 29(11) DOI: 10.1111\/ddi.13773 (IF=4.6; MEiN=140)<\/li>\n\n\n\n<li>Luo Y., Taylor A., Weigelt P., Gu\u00e9nard B., Economo E.P., Nowak A., Inderjit I., Kreft H. 2023. Climate and ant diversity explain the global distribution of ant-plant mutualisms. Ecography 2023: e06841 doi: 10.1111\/ecog.06841 (IF=5.9; MEiN=100)<\/li>\n\n\n\n<li>Niemczyk M., Ruci\u0144ska A., Puchalski J., Kapler A., Nowak A., Ja\u017awa M. 2023. Is the Protection of Habitat Directive Eleocharis carniolica in its Northern Limits Really Needed? \u2013 A Life Strategy Based Investigation. Aquatic Botany 188(2): 103676. (IF: 1.8, MEiN=70)<\/li>\n\n\n\n<li>\u015awis\u0142owski P., Nowak A., Rajfur M. 2023. Significance of moss pretreatments in active biomonitoring surveys. International Journal of Phytoremediation published online. DOI: 10.1080\/15226514.2023.2241583 (IF=3.7; MEiN=100)<\/li>\n\n\n\n<li>Bak H., Fekete R., T\u00f6r\u00f6k P., S\u00fcveges K., Moln\u00e1r V.A. 2023. Effects of habitat management on newly found populations of the endangered weed, Mummenhoffia alliacea (Brassicaceae). Weed Research 63:237\u2013245. DOI: 10.1111\/wre.12584 (IF=1.7; MEiN=100)<\/li>\n\n\n\n<li>Erd\u0151s L., Ho K.V., B\u00e1tori Z., Kr\u00f6el-Dulay G., \u00d3nodi G., T\u00f6lgyesi C., T\u00f6r\u00f6k P., Lengyel A. 2023. Taxonomic, functional and phylogenetic diversity peaks do not coincide along a compositional gradient in forest-grassland mosaics. Journal of Ecology 111:182\u2013197. 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Cells 11, 486. <a href=\"https:\/\/doi.org\/10.3390\/cells11030486\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.3390\/cells11030486<\/a> (IF=7,666; MEiN=140)<\/li>\n\n\n\n<li><strong>Tomiczak K.<\/strong>, Adamus A., Cegielska-Taras T., Kie\u0142kowska A., Smyda-Dajmund P., Sosnowska K., Sza\u0142a L. 2022. Tissue culture techniques for the production of interspecific hybrids in Poland: History and achievements. Acta Soc. Bot. Pol. 91: 9119, <a href=\"https:\/\/doi.org\/10.5586\/asbp.9119\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/asbp.9119<\/a> (IF=1,123, MEiN=70)<\/li>\n\n\n\n<li>Gadowski S., <strong>Tomiczak K.<\/strong>, Komsta \u0141. 2022. Nonnegative principal component analysis in thin layer fingerprint screening: A case of <em>Gentiana <\/em>extracts from in vitro cultures. Journal of Liquid Chromatography &amp; Related Technologies. <a href=\"https:\/\/doi.org\/10.1080\/10826076.2022.2089998\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1080\/10826076.2022.2089998<\/a><strong> <\/strong>(IF=1,467, MEiN=40)<\/li>\n\n\n\n<li>T\u00f6lgyesi C., Torma A., B\u00e1tori, Z., \u0160eat, J., Popovi\u0107, M., Gall\u00e9, R., Gall\u00e9-Szpisjak, N., Erd\u0151s, L., Vink\u00f3, T., Kelemen, A., <strong>T\u00f6r\u00f6k P<\/strong>. 2022. Turning old foes into new allies\u2014Harnessing drainage canals for biodiversity conservation in a desiccated European lowland region. Journal of Applied Ecology 59, 89-102. doi:\u00a0 10.1111\/1365-2664.14030 (IF=6,865; MEiN=140)<\/li>\n\n\n\n<li>T\u00f6lgyesi C., Vad\u00e1sz C., Kun R., Csath\u00f3 A.I., B\u00e1tori Z., H\u00e1benczyus A., Erd\u0151s L., <strong>T\u00f6r\u00f6k P<\/strong>. 2022. Post-restoration grassland management overrides the effects of restoration methods in propagule-rich landscapes. Ecological Applications 32, e02463 (IF=6,105; MEiN=100)<\/li>\n\n\n\n<li>Erd\u0151s L., <strong>T\u00f6r\u00f6k P<\/strong>., Veldman J.W., B\u00e1tori Z., Bede-Fazekas \u00c1., Magnes M., Kr\u00f6el-Dulay G., T\u00f6lgyesi C. 2022. How climate, topography, soils, herbivores, and fire control forest\u2013grassland coexistence in the Eurasian forest-steppe. Biological Reviews 10.1111\/brv.12889 (IF=14,350; MEiN=200)<\/li>\n\n\n\n<li>T\u00f6lgyesi C., Buisson E., Helm A., Temperton V.M, <strong>T\u00f6r\u00f6k P<\/strong>. 2022. Urgent need for updating the slogan of global climate actions from \u201ctree planting\u201d to \u201crestore native vegetation\u201d. Restoration Ecology 30, e13594 (IF=4,181; MNiSW=70)<\/li>\n\n\n\n<li>Erd\u0151s L., Bede-Fazekas \u00c1., B\u00e1tori Z., Berg Ch., Kr\u00f6el-Dulay G., Magnes M., Sengl P., T\u00f6lgyesi C., <strong>T\u00f6r\u00f6k P<\/strong>., Zinnen J. 2022. Species-based indicators to assess habitat degradation: Comparing the conceptual, methodological, and ecological relationships between hemeroby and naturalness values. Ecological Indicators 136, 108707 (IF=6,263; MEiN=140)<\/li>\n\n\n\n<li>H\u00e1benczyus A., T\u00f6lgyesi C., P\u00e1l R., Kelemen A., Aradi E., B\u00e1tori Z., Sonkoly J., T\u00f3th E., Balogh N., <strong>T\u00f6r\u00f6k P<\/strong>. 2022. Increasing abundance of an invasive C4 grass is associated with larger community changes away than at home. Applied Vegetation Science 25, e12659 (IF=3,431; MEiN=100)<\/li>\n\n\n\n<li>Sonkoly J., Tak\u00e1cs A., Moln\u00e1r V.A., <strong>T\u00f6r\u00f6k P<\/strong>. 2022. Trade of commercial potting substrates: A largely overlooked means of the long-distance dispersal of plants. Science of the Total Environment 82515, e154093 (IF=10,753; MEiN=200)<\/li>\n\n\n\n<li>Ulrich W., Matthews T., Biurrun I., Campos J.A., Czortek P., Dembicz I., Essl F., Filibeck G., del Galdo G-P.G., G\u00fcler B., Naqinezhad A., <strong>T\u00f6r\u00f6k P<\/strong>., Dengler J. 2022. Environmental drivers and spatial scaling of species abundance distributions in Palaearctic grassland vegetation. Ecology 103, e3725 (IF=6,431; MEiN=200)<\/li>\n\n\n\n<li>Ghasempour M., Erfanzadeh R., <strong>T\u00f6r\u00f6k P<\/strong>. 2022. Fire effects on soil seed banks under different woody plant species in Mazandaran province, Iran. Ecological Engineering 183, e106762 (IF=4,379; MEiN=100)<\/li>\n\n\n\n<li>T\u00f6lgyesi C., H\u00e1benczyus A., Kelemen A., <strong>T\u00f6r\u00f6k P<\/strong>., Valk\u00f3 O., De\u00e1k B., Erd\u0151s L., T\u00f3th B., Csik\u00f3s N., B\u00e1tori Z. 2022. How to not trade water for carbon with tree planting in water-limited temperate biomes? Science of the Total Environment 85615, e158960 (IF=10,753; MEiN=200)<\/li>\n\n\n\n<li>Erd\u0151s L., Ho K.V., B\u00e1tori Z., Kr\u00f6el-Dulay G., \u00d3nodi G., T\u00f6lgyesi C., <strong>T\u00f6r\u00f6k P<\/strong>. and Lengyel A. 2022. Taxonomic, functional, and phylogenetic diversity peaks do not coincide along a compositional gradient in forest-grassland mosaics. J Ecol. Accepted Author Manuscript. <a href=\"https:\/\/doi.org\/10.1111\/1365-2745.14025\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1111\/1365-2745.14025<\/a> (IF=6,381; MEiN=140)<\/li>\n\n\n\n<li>T-Krasznai E., <strong>T\u00f6r\u00f6k P.<\/strong>, Borics G., Luk\u00e1cs \u00c1.; K\u00f3kai Z., Lerf V., G\u00f6rg\u00e9nyi J., B-B\u00e9res V. 2022. Functional dynamics of phytoplankton assemblages in hypertrophic lakes: Functional and species diversity is highly resistant to cyanobacterial blooms. Ecological Indicators 145: 109583. DOI: 10.1016\/j.ecolind.2022.109583. (IF=6,263; MEiN=140 pkt)<\/li>\n\n\n\n<li>Ol\u0119dzka A., Cichocka K., <strong>Woli\u0144ski K.<\/strong>, Melzig M.F., Czerwi\u0144ska M.E. 2022. Potentially bio-accessible metabolites from an extract of <em>Cornus mas<\/em> fruit after gastrointestinal digestion i<em>n vitro<\/em> and gut microbiota e<em>x vivo<\/em> treatment. MDPI Nutrients, 14 (11), 2287; <a href=\"https:\/\/doi.org\/10.3390\/nu14112287\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.3390\/nu14112287<\/a> (IF=6,706; MEiN=140)<\/li>\n\n\n\n<li><strong>Zn\u00f3j A.<\/strong>, Gawor J., Gromadka R. &amp; Chwedorzewska K.J., Grzesiak J. 2022. Highly specialized bacterial communities within three distinct rhizocompartments of Antarctic hairgrass (<em>Deschampsia antarctica<\/em> Desv.). Polar Biology, 1-14. (IF=2,310; MEiN=70).<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>b)\u00a0<\/a>inne publikacje recenzowane<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li><strong>\u015awierszcz S.,<\/strong> Swacha G., Radu\u0142a M.W., Nowak S. 2022. Distribution of graminoids in open habitats in Tajikistan and Kyrgyzstan. Vegetation Classification and Survey 3, 273-286. DOI: 10.3897\/VCS.95767<\/li>\n\n\n\n<li><strong>Jura-Morawiec J.<\/strong>, Marrero \u00c1. 2022. Ra\u00edces a\u00e9reas del drago macaronesico (<em>Dracaena draco<\/em>) \u2013 crecimiento, anatom\u00eda y posible funci\u00f3n. Bot\u00e1nica Macaron\u00e9sica 32: xx-xx (accepted, IF=0; MEiN=5)<\/li>\n\n\n\n<li><strong>Miku\u0142a A.<\/strong>,<strong> Tomiczak K.<\/strong>,<strong> Grzyb M.<\/strong>, <strong>Tomaszewicz W. <\/strong>2022. Somatyczna embriogeneza: od odkrycia przez badania do praktycznego wykorzystania. Post\u0119py Biochemii 68 (1): 24-37 <a href=\"https:\/\/doi.org\/10.18388\/pb.2021_403\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.18388\/pb.2021_403<\/a>\u00a0 (IF=0, MEiN=70)<\/li>\n\n\n\n<li><strong>Nowak A<\/strong>., Biurrun I., Jani\u0161ov\u00e1 M., Dengler J. 2022. Classification of grasslands and other open vegetation types in the Palaearctic \u2013 Introduction to the Special Collection. Vegetation Classification and Survey 3: 149\u2013159. doi: 10.3897\/VCS.87068<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>c)\u00a0Monografie, <\/a>rozdzia\u0142y w monografiach \/ ksi\u0105\u017cce w j\u0119z. angielskim i innym<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Badora K., Wr\u00f3bel R., <strong>Nowak A<\/strong>. 2022. Sp\u00f3jno\u015b\u0107 sieci ekologicznej Natura 2000 w\u00a0wojew\u00f3dztwie opolskim. Wyd. Uniwersytetu Opolskiego. ISBN: 978-83-961853-3-4 (MEiN=80)<\/li>\n\n\n\n<li>Mostowska A., Rosta\u0144ski A., <strong>Miku\u0142a A.<\/strong> (red.) 2022. Polskie Towarzystwo Botaniczne w setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ISBN 978-83-954123-9-4 (wersja drukowana), ISBN 978-83-963503-1-2 (wersja online), DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2<\/a>\u00a0 (MEiN=80)<\/li>\n\n\n\n<li><a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\">tps:\/\/doi.org\/10.5586\/978-83-963503-1-2_01<\/a> &#8212;- rozdzia\u0142y w monografiach&#8212;&#8211;<\/li>\n\n\n\n<li><strong>Miku\u0142a A. <\/strong>2022. Powstanie, rozw\u00f3j i misja Polskiego Towarzystwa Botanicznego, w: Mostowska A., Rosta\u0144ski A.,<strong> Miku\u0142a A. <\/strong>(red.) Polskie Towarzystwo Botaniczne w\u00a0setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ss. 16-25. DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01<\/a> (MEiN=5)<\/li>\n\n\n\n<li><strong>Miku\u0142a A., G\u00f3recka M. (2022)<\/strong> Struktura i w\u0142adze Polskiego Towarzystwa Botanicznego Struktura PTB, w: Mostowska A., Rosta\u0144ski A.,<strong> Miku\u0142a A. <\/strong>(red.) Polskie Towarzystwo Botaniczne w setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ss. 26-39. DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_02\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2_02<\/a>C <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\"><\/a>(MEiN=5)<\/li>\n\n\n\n<li><strong>Miku\u0142a A., G\u00f3recka M. <\/strong>2022. Cz\u0142onkowie Honorowi Polskiego Towarzystwa Botanicznego, w: Mostowska A., Rosta\u0144ski A.,<strong> Miku\u0142a A. <\/strong>(red.) Polskie Towarzystwo Botaniczne w setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ss. 50-55. DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_04\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2_04<\/a> <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\"><\/a>(MEiN=5)<\/li>\n\n\n\n<li><strong>Miku\u0142a A., G\u00f3recka M. <\/strong>2022. Zjazdy Polskiego Towarzystwa Botanicznego, w: Mostowska A., Rosta\u0144ski A..,<strong> Miku\u0142a A <\/strong>(red.) Polskie Towarzystwo Botaniczne w\u00a0setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ss. 56-67. DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_05\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2_05<\/a> <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\"><\/a>(MEiN=5)<\/li>\n\n\n\n<li><strong>Miku\u0142a A., G\u00f3recka M. <\/strong>2202. Dzia\u0142alno\u015b\u0107 wydawnicza Polskiego Towarzystwa Botanicznego, w: Mostowska A., Rosta\u0144ski A.,<strong> Miku\u0142a A. <\/strong>(red.) Polskie Towarzystwo Botaniczne w setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ss. 68-85. DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_06\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2_06<\/a> <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\"><\/a>(MEiN=5)<\/li>\n\n\n\n<li><strong>Rybczy\u0144ski J.J. <\/strong>2022. Biblioteka i archiwum Polskiego Towarzystwa Botanicznego, w: Mostowska A., Rosta\u0144ski A.,<strong> Miku\u0142a A. <\/strong>(red.) Polskie Towarzystwo Botaniczne w setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ss. 86-95. DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_07\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2_07<\/a> <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\"><\/a>(MEiN=5)<\/li>\n\n\n\n<li><strong>Miku\u0142a A. <\/strong>2022. Finanse Polskiego Towarzystwa Botanicznego, w: Mostowska A., Rosta\u0144ski A.,<strong> Miku\u0142a A. <\/strong>(red.) Polskie Towarzystwo Botaniczne w setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ss. 100-109. DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_09\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2_09<\/a> <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\"><\/a>(MEiN=5)<\/li>\n\n\n\n<li><strong>Miku\u0142a A., G\u00f3recka M. <\/strong>2022.Kalendarium Polskiego Towarzystwa Botanicznego 1922-2022, w: Mostowska A., Rosta\u0144ski A.,<strong> Miku\u0142a A. <\/strong>(red.) Polskie Towarzystwo Botaniczne w setn\u0105 rocznic\u0119 powstania (1922\u20132022). Polskie Towarzystwo Botaniczne, Warszawa. ss. 570-587. DOI: <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_12\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.5586\/978-83-963503-1-2_12<\/a> <a href=\"https:\/\/doi.org\/10.5586\/978-83-963503-1-2_01\" target=\"_blank\" rel=\"noopener\"><\/a>(MEiN=5)<\/li>\n<\/ol>\n\n\n\n<ul class=\"wp-block-list\"><\/ul>\n\n\n\n<h2 class=\"wp-block-heading\"><a><\/a><a>d)&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; ksi\u0105\u017cki popularnonaukowe<\/a><\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>\u201eTad\u017cycki tygiel. Odbicie natury Azji \u015arodkowej w kulturze kulinarnej Tad\u017cykistanu\u201d (The Tajik Melting Pot. Central Asian nature as reflected in the culinary culture of Tajikistan). 2022. Praca zbiorowa: Marcin Andrzej Kotowski, Murodbek Laldjebaev, Barfiya Palavonshanbieva, Alidovar Sodatsairov, Arkadiusz Nowak. ISBN: 978-83-961853-3-4<\/li>\n<\/ol>\n\n\n\n<h1 class=\"wp-block-heading\"><a>WYKAZ PUBLIKACJI<\/a> WYDANYCH W ROKU 2021<\/h1>\n\n\n\n<h2 class=\"wp-block-heading\"><a>a)<\/a> publikacje w czasopismach z listy MNiSW<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Dmuchowski P., Dmuchowski W., <strong>Baczewska-D\u0105browska A.H<\/strong>., Gworek B. 2021. Green economy\u2013growth and maintenance of the conditions of green growth at the level of polish local authorities. Journal of Cleaner Production, 301, 126975. doi.org\/10.1016\/j.jclepro.2021.126975 (MNiSW=<strong>140<\/strong> pkt, IF=9.297)<\/li>\n\n\n\n<li>D\u0105browski P., <strong>Baczewska-D\u0105browska A.H.,<\/strong> Bussotti F., Pollastrini M., Piekut K., Kowalik W., Wr\u00f3bel J., Kalaji H.M. 2021. Photosynthetic efficiency of <em>Microcystis ssp<\/em>. under salt stress. Environmental and Experimental Botany, 186, 104459. doi.org\/10.1016\/j.envexpbot.2021.104459 (MNiSW=<strong>100<\/strong> pkt, IF= 5.54)<\/li>\n\n\n\n<li><strong>Baczewska-D\u0105browska A.H.,<\/strong> Dmuchowski W., Gozdowski D., Gworek B., Jozwiak A., Swiezewska E., D\u0105browski P., Suwara I. 2021. The importance of prenol lipids in mitigating salt stress in the leaves of <em>Tilia\u00d7 euchlora<\/em> trees. Trees, 1-12. doi.org\/10.1007\/s00468-021-02214-8 (MNiSW=<strong>100<\/strong> pkt, IF=2.529)<\/li>\n\n\n\n<li>Dmuchowski W., <strong>Baczewska-D\u0105browska A<\/strong>.<strong>H.<\/strong>, Gozdowski D., Br\u0105goszewska P., Gworek B., Suwara I., Chojnacki T., J\u00f3\u017awiak A., Swiezewska E. 2021. Effect of salt stress in urban conditions on two <em>Acer <\/em>species with different sensitivity. <em>PeerJ<\/em>, <em>9<\/em>, e10577. DOI 10.7717\/peerj.1057 (MNiSW=<strong>100<\/strong> pkt, IF=2.984)<\/li>\n\n\n\n<li>Niedziela A., <strong>Domzalska L<\/strong>., Dynkowska W.M., Pernisov\u00e1 M., Rybka K. 2021. Aluminum Stress Induces Irreversible Proteomic Changes in the Roots of the Sensitive but Not the Tolerant Genotype of Triticale Seedlings. Plants 11, 165. doi.org\/10.3390\/plants11020165 (MEiN=<strong>100<\/strong> pkt, IF=3.935) <\/li>\n\n\n\n<li><strong>Jura-Morawiec J.<\/strong>, Oskolski A., Simpson P. 2021. Revisiting the anatomy of the monocot cambium, a novel meristem.Planta, 254: 6. DOI: 10.1007\/s00425-021-03654-9 (MEiN=<strong>100<\/strong> pkt, IF=4.116)<strong> <\/strong><\/li>\n\n\n\n<li>Sokoloff D., <strong>Jura-Morawiec J.<\/strong>, Zoric L., Fay M. 2021. Plant anatomy: at the heart of modern botany. Botanical Journal of the Linnean Society 195: 249-253 <a href=\"https:\/\/doi.org\/10.1093\/botlinnean\/boaa110\" target=\"_blank\" rel=\"noopener\">DOI: 10.1093\/botlinnean\/boaa110<\/a> (MEiN=<strong>100<\/strong> pkt, IF=2.911)<strong> <\/strong><\/li>\n\n\n\n<li>Vaculn\u00e1 L.,Majesk\u00fd \u013d., Ali T., Seregin A.P., Prausov\u00e1 R., <strong>Kapler A.<\/strong>, Iakushenko D., Thines M., Kitner M 2021. Genetic structure of endangered species <em>Adenophora liliifolia<\/em> and footprints of postglacial recolonisation in Central Europe. Conservation Genetics 22(6): 1069 \u2013 1084. (MEiN=<strong>70<\/strong> pkt, IF=2.538)<\/li>\n\n\n\n<li>\u017babicka J., \u017babicki P., S\u0142omka A., J\u0119drzejczyk-Koryci\u0144ska M., Nowak T., \u015aliwinska E., <strong>Kapler A.<\/strong>, Migda\u0142ek G, Kuta E. 2021. Genotype-dependent mass somatic embryogenesis: a chance to recover extinct populations of Pulsatilla vulgaris Mill. 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The Role of Plant Origin Preparations and Phenological Stage in Anatomy Structure Changes in the Rhizogenesis of Rosa \u201cHurdal\u201d. Frontiers in Plant Science 12(7): 696998 (MEiN =<strong>100<\/strong> pkt, IF=5.753)<\/li>\n\n\n\n<li>Puchta M., Groszyk J., Ma\u0142ecka M., Koter M.D., <strong>Niedzielski M<\/strong>., Rakoczy-Trojanowska M., <strong>Boczkowska M.<\/strong>. 2020. Barley seeds mirnome stability during long-term storage and aging. International Journal of Molecular Sciences, 22(9),4315. (MEiN=<strong>140<\/strong> pkt, IF=5.923)<\/li>\n\n\n\n<li>Naqinezhad A., <strong>Nowak A<\/strong>., \u015awierszcz S., Jalili A., Kamrani A., Wheeler B.D., Shaw S.C., Attar F., Nobis M., Nowak S., H\u00e1jek M. 2021. Syntaxonomy and biogeography of the Irano-Turanian mires and springs. Applied Vegetation Science 24(2)\u00a0 e12571 10.1111\/avsc.12571. 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Global patterns of alpine plant diversity. Global Ecology and Biogeography 30(6): 1218-1231. 10.1111\/geb.13297 (MEiN=<strong>140<\/strong> pkt, IF=7.144)<\/li>\n\n\n\n<li>\u00a0Loidi J., Chytr\u00fd M., Jim\u00e9nez-Alfaro B., Alessi N., Biurrun I., Antonio Campos J., \u010carni A., Fern\u00e1ndez-Pascual E., Font Castell X., Gholizadeh H., Indreica A., Kavgaci A., Knollov\u00e1 I., Naqinezhad A., Nov\u00e1k P., <strong>Nowak A<\/strong>., \u0160kvorc \u017d., Tsiripidis I., Vassilev K., Marcen\u00f2 C. 2021. Life-form diversity across temperate deciduous forests of Western Eurasia: a different story in the understory? Journal of Biogeography 48(10): <a href=\"https:\/\/doi.org\/10.1111\/jbi.14254\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1111\/jbi.14254<\/a> (MEiN=<strong>140<\/strong> pkt, IF=4.324)<\/li>\n\n\n\n<li>\u00a0Sabatini F.M., Lenoir J., Hattab T., Arnst E.A., Chytr\u00fd M., Dengler J., De Ruffray P., Hennekens S.M., Jandt U., Jansen F., Jim\u00e9nez-Alfaro B. Kattge J., &#8230; <strong>Nowak A<\/strong>., &#8230; Bruelheide H. 2021. sPlot open \u2013 An environmentally- balanced, open-access, global dataset of vegetation plots. Global Ecology and Biogeography 30(9): 1740-1764 doi.org\/10.1111\/geb.13346 (MEiN=<strong>140<\/strong> pkt, IF=7.144)<\/li>\n\n\n\n<li>\u00a0Radu\u0142a M., \u015awierszcz S., Nobis M., Nowak S., Nobis A., <strong>Nowak A<\/strong>. 2021. How climate changes can influence the diversity of endemic species in Tajikistan? \u2013 lessons from the past in a hotspot of mountain biodiversity. Scientific Reports 11: 18684 doi.org\/10.1038\/s41598-021-98027-3 (MEiN=<strong>140<\/strong> pkt, IF=4.379)<\/li>\n\n\n\n<li>\u00a0<strong>Nowak A.,<\/strong> \u015awierszcz S., Nowak S., Nobis A., Klichowska E. &amp; Nobis M. 2021. Syntaxonomy, diversity and distribution of the vegetation of rock crevices, clefts and ledges in the colline and montane belts of Central Pamir-Alai and western Tian Shan Mts. (Middle Asia). Plant Biosystems (accepted) doi.org\/10.1080\/11263504.2021.1922531 (MEiN=<strong>40<\/strong> pkt, IF=2.838)<\/li>\n\n\n\n<li>\u00a0<strong>Nowak A<\/strong>., \u015awierszcz S., Nowak S., Nobis M. 2021. Vegetation diversity of screes and taluses of the Pamir and south-western Tian Shan in Middle Asia. Folia Geobotanica 56: 43\u201367. doi.org\/10.1007\/s12224-021-09392-w (MEiN=<strong>70<\/strong> pkt, IF =1.544)<\/li>\n\n\n\n<li>\u00a0Dembicz I., Dengler J., Steinbauer M.J., Matthews T.J., Bartha S., Burrascano S., &#8230; <strong>Nowak A.<\/strong> &#8230; Biurrun I. 2021. Patterns and drivers of fine-grain beta diversity in Palaearctic grassland vegetation. Journal of Vegetation Science 32(3): e13045 doi.org\/10.1111\/jvs.13045 (MEiN=<strong>100<\/strong> pkt, IF=2.685)<\/li>\n\n\n\n<li>\u00a0K\u0105cki Z., \u0141ysko A., Dajdok Z., Kobierski P., Krawczyk R., <strong>Nowak A<\/strong>., Rosadzi\u0144ski S., Popiela A. 2021. Formalized classification of ephemeral wetland vegetation (Iso\u00ebto-Nanojuncetea class) in Poland (Central Europe). Peer J 9: e11703 <a href=\"https:\/\/doi.org\/10.7717\/peerj.11703\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.7717\/peerj.11703<\/a> (MEiN=<strong>100<\/strong> pkt, IF=2.984)<\/li>\n\n\n\n<li>\u00a0Wr\u00f3bel A., Klichowska E., Baiakhmetov E., <strong>Nowak A<\/strong>., Nobis M. 2021. Molecular phylogenetic analysis of the <em>Eragrostis pilosa<\/em> complex indicates that invasive <em>Eragrostis amurensis<\/em> is not a component of Central European flora. Biological Invasions 23: 2305\u20132327 doi: 10530-021-02507-6. (MEiN=<strong>100<\/strong> pkt, IF=3.133)<\/li>\n\n\n\n<li>\u00a0Biurrun I., Pielech R., Dembicz I., \u2026, <strong>Nowak A<\/strong>., \u2026 , 2021. Benchmarking plant diversity of Palaearctic grasslands and other open habitats. Journal of Vegetation Science 32: e13050 doi.org\/10.1111\/jvs.13050 (MEiN=<strong>100<\/strong> pkt, IF=2.685)<\/li>\n\n\n\n<li>\u00a0\u015awis\u0142owski P., <strong>Nowak A.<\/strong>, Rajfur M. 2021. 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Invasion of the North American sand dropseed (Sporobolus cryptandrus) \u2013 A new pest in Eurasian sand areas?.\u00a0 Global Ecology and Conservation 32: e01942 (MEiN=<strong>100 <\/strong>pkt, IF=3.380)<\/li>\n\n\n\n<li><strong>\u00a0<\/strong>T\u00f6lgyesi C., Buisson E., Helm A., Temperton V.M., <strong>T\u00f6r\u00f6k P.<\/strong> 2021. Urgent need for updating the slogan of global climate actions from \u201ctree planting\u201d to \u201crestore native vegetation\u201d. Restoration Ecology, doi: 10.1111\/rec.13594 (MEiN <strong>70<\/strong> pkt, IF=3.404)<\/li>\n\n\n\n<li>T\u00f6lgyesi C., Vadas C., Kun R., Csato A.I., Batori Z., Habenczyus A., Erdos L., <strong>T\u00f6r\u00f6k P.<\/strong> 2021. Post-restoration grassland management overrides the effects of restoration methods in propagule-rich landscapes. 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(MEiN=<strong>140<\/strong> pkt, IF=5,605;)<\/li>\n\n\n\n<li>Deak B., Bede A., Radai Z., Tothmeresz B., <strong>T\u00f6r\u00f6k P<\/strong>., Nagy D., Torma A.,Lorinczi G., Nagy A., Mizser S., Kelemen A., Valko O. 2021. Different extinction debts among plants and arthropods after loss of grassland amount and connectivity. Biological Conservation 264: e109372 (MEiN=<strong>140<\/strong> pkt, IF=5.990)<\/li>\n\n\n\n<li>Czerwi\u0144ska M.E., Bobi\u0144ska A., Cichocka K., Buchholz T., <strong>Woli\u0144ski K.<\/strong>, Melzig M.F., 2021. Cornus mas and Cornus officinalis &#8211; A Comparison of Antioxidant and Immunomodulatory Activities of Standardized Fruit Extracts in Human Neutrophils and Caco-2 Models. MDPI Plants 10 (11), 2347; https:\/\/doi.org\/10.3390\/plants10112347 (IF=3.935)<\/li>\n\n\n\n<li><strong>Zn\u00f3j, A<\/strong>., Gawor, J., Gromadka, R., &amp; Chwedorzewska, K. J. Grzesiak, J. (2021). Root-associated bacteria community characteristics of Antarctic plants &#8211; <em>Deschampsia antarctica<\/em> and <em>Colobanthus quitensis<\/em> \u2013 a comparison. <em>Microbial Ecology, <\/em>1-13.\u00a0 <a href=\"https:\/\/doi.org\/10.1007\/s00248-021-01891-9\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1007\/s00248-021-01891-9<\/a> (MEiN=<strong>100<\/strong> pkt, IF=4.552) <\/li>\n\n\n\n<li><strong>Zn\u00f3j, A<\/strong>., Grzesiak, J., Gawor, J., Gromadka, R., Chwedorzewska, K. J. (2021). Bacterial Communities Associated with Poa annua Roots in Central European (Poland) and Antarctic Settings (King George Island). <em>Microorganisms<\/em>, <em>9<\/em>(4), 811. <a href=\"https:\/\/doi.org\/10.3390\/microorganisms9040811\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.3390\/microorganisms9040811<\/a> (MEiN=<strong>20<\/strong> pkt, \u00a0IF=4.128)<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>b)\u00a0<\/a>inne publikacje recenzowane<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li><strong>Nowak A.<\/strong>, <strong>\u015awierszcz S.<\/strong>, Nowak S., Nobis M. 2021. New syntaxa of tall-forb vegetation in the Pamir-Alai and western Tian Shan Mts. (Tajikistan and Kyrgyzstan, Middle Asia) \u2013 an addendum to Nowak et al. 2020. Vegetation Classification and Survey 2: xx\u2013xx (accepted; MEiN <strong>5<\/strong> pkt) <\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>c)\u00a0Monografie, <\/a>rozdzia\u0142y w monografiach \/ ksi\u0105\u017cce w j\u0119z. angielskim i innym<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li><strong>Kojs P. <\/strong>2021. Typologia stresu \u2013 od hipostresu letalnego do hiperstresu letalnego. W:\u00a0W\u0105sik Z. (Ed.) WORKING PAPERS IN LINGUISTICS AND APPLIED COMMUNICOLOGY. POZNA\u0143 \u2013 WROC\u0141AW 2021 (MEiN <strong>5<\/strong> pkt.)<\/li>\n\n\n\n<li><strong>Miodek A., Gizi\u0144ska A., Kojs, P.,<\/strong> 2021. Wood anatomical analysis of relict Pinus sylvestris from Sokolica. Analiza anatomiczna drewna reliktowej sosny zwyczajnej z Sokolicy. W: Bodziarczyk J., (Ed.) Pieniny \u2013 Przyroda i Cz\u0142owiek MONOGRAFIE XVII: 147\u2013172. Wydawnictwo Uniwersytetu Rolniczego w Krakowie. <\/li>\n\n\n\n<li>\u040a\u0438\u0441\u043e\u0440\u0438\u0435\u0432 \u040a., \u0411\u043e\u0431\u043e\u0435\u0432 \u041c.\u0422., \u0411\u043e\u0431\u043e\u043a\u0430\u043b\u043e\u043d\u043e\u0432 \u040c.\u0410., \u0414\u0430\u0432\u043b\u0430\u0442\u043e\u0432 \u0410.\u0421., \u041c\u0430\u0434\u0430\u043c\u0438\u043d\u043e\u0432 \u0410.\u0410, \u041c\u0443\u0431\u0430\u043b\u0438\u0435\u0432\u0430 \u0428., \u0420\u0430\u045a\u0438\u043c\u043e\u0432 \u0421., <strong>Nowak A<\/strong>., Wenjun Li. 2021. \u0410\u0442\u043b\u0430\u0441\u0438 \u0440\u0430\u0441\u0442\u0430\u043d\u0438\u045a\u043e\u0438 \u0448\u0438\u0444\u043e\u0431\u0430\u0445\u0448\u0438 \u0422\u043e\u0459\u0438\u043a\u0438\u0441\u0442\u043e\u043d. \u0409\u0438\u043b\u0434\u0438 1. \u0414\u0443\u0448\u0430\u043d\u0431\u0435. pp. 247. (MEiN <strong>80<\/strong> pkt)<strong> <\/strong><\/li>\n\n\n\n<li>Fu Dostatny D., Dajdok Z., <strong>Nowak A.<\/strong>, &#8230;Podyma W. 2021. Ro\u015bliny chronione i\u00a0zagro\u017cone wymarciem reprezentowane w\u015br\u00f3d dzikich gatunk\u00f3w pokrewnych ro\u015blinom uprawnym w Polsce. W: Dzikie gatunki pokrewne ro\u015blinom uprawnym wyst\u0119puj\u0105ce w Polsce. Lista, zasoby i zagro\u017cenia. Wydawnictwo Kontekst \u2013 Pozna\u0144. (MEiN <strong>20<\/strong> pkt)<\/li>\n\n\n\n<li>Fu Dostatny D., Dajdok Z., <strong>Nowak A.<\/strong>, \u2026Podyma W. 2021. Lista dzikich gatunk\u00f3w pokrewnych ro\u015blinom uprawnym wyst\u0119puj\u0105cych w Polsce. W: Dzikie gatunki pokrewne ro\u015blinom uprawnym wyst\u0119puj\u0105ce w Polsce. Lista, zasoby i zagro\u017cenia Wydawnictwo Kontekst \u2013 Pozna\u0144. (MEiN <strong>20<\/strong> pkt)<\/li>\n\n\n\n<li><strong>Puchalski J., Trz\u0105ski L., Ruci\u0144ska A., red.: Woli\u0144ski K<\/strong>. 2021. FlorIntegral \u2013 zintegrowana ochrona <em>in situ<\/em> i <em>ex situ<\/em> rzadkich, zagro\u017conych i priorytetowych gatunk\u00f3w flory na terenie Polski. 2021. ss 62. Wydawnictwo PAN OB. Warszawa.<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>d)\u00a0ksi\u0105\u017cki popularnonaukowe<\/a><\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Jab\u0142o\u0144 w Ogrodzie \u201eApple Tree in the Garden\u201d. 2021. pod red. <strong>Kojs P.<\/strong>,<strong> Zabielski R.<\/strong>, ss 272. Wydawnictwo PAN. Warszawa. <\/li>\n<\/ol>\n\n\n\n<p class=\"wp-block-paragraph\">Wybrane rozdzia\u0142y:<\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Pokusa \u2013 zamiast wst\u0119pu, s. 8 \u2013 <strong>Pawe\u0142 Kojs, Romuald Zabielski<\/strong>;<\/li>\n\n\n\n<li>Szlak jab\u0142oniowy: z Raju pod Warszaw\u0119, s. 20 \u2013 <strong>Arkadiusz Nowak, Marcin Kotowski<\/strong>;<\/li>\n\n\n\n<li>Stare odmiany jab\u0142oni zgromadzone w PAN Ogrodzie Botanicznych \u2013 CZRB w\u00a0Powsinie, s. 46 \u2013 <strong>Adam Kapler, Ryszard Rawski<\/strong>;<\/li>\n\n\n\n<li>Bank historycznych odmian jab\u0142oni, czyli kolekcja jab\u0142oni w zamra\u017carce, s. 96 \u2013 <strong>Konrad Woli\u0144ski;<\/strong><\/li>\n\n\n\n<li>Profesor Szczepan Aleksander Pieni\u0105\u017cek \u2013 \u017cycie wielkiego uczonego w \u015bwiecie jab\u0142oni, s. 112 \u2013 <strong>Jerzy Puchalski<\/strong>;<\/li>\n\n\n\n<li>Jab\u0142ka na j\u0119zyku, s. 146 \u2013 <strong>Ma\u0142gorzata Szyma\u0144czyk<\/strong>.<\/li>\n\n\n\n<li><strong>Ko\u015bcielak A., Kapler A.<\/strong> 2021. Magnolie w Ogrodzie Botanicznym Polskiej Akademii Nauk \u2013 Centrum Zachowania R\u00f3\u017cnorodno\u015bci Biologicznej w\u00a0Powsinie. Wydanie PAN OB-CZRB. II zmienione. (ss. 54, 63 barwnych ilustracji). Warszawa<\/li>\n\n\n\n<li>2021. Przewodnik po ogrodach i arboretach. Wyd. PAN OB-CZRB II zmienione. Warszawa.<\/li>\n\n\n\n<li>2021. Endemity Tad\u017cykistanu. Wyd. PAN OB-CZRB. Warszawa<\/li>\n<\/ul>\n\n\n\n<h1 class=\"wp-block-heading\"><a>WYKAZ PUBLIKACJI<\/a> WYDANYCH W ROKU 2020<\/h1>\n\n\n\n<h2 class=\"wp-block-heading\"><a>a)\u00a0publikacje <\/a>w czasopismach z listy MNiSW<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Olchowik J., Suchocka M., Malewski T., <strong>Baczewska-D\u0105browska A.H., <\/strong>Studnicki M., Hilszcza\u0144ska D. 2020. The Ectomycorrhizal Community of Crimean Linden Trees in Warsaw, Poland. Forests, 11(9), 926. doi.org\/10.3390\/f11090926 (IF=2,221; MNiSW=100 pkt).<\/li>\n\n\n\n<li>Swoczyna T., Mojski J., <strong>Baczewska-D\u0105browska A.H<\/strong>., Kalaji, H. M., Elsheery, N. I. 2020. Can we predict winter survival in plants using chlorophyll a fluorescence?. Photosynthetica, 58(2), 433-442. DOI: 10.32615\/ps.2019.181 (IF=1,740; MNiSW=70 pkt.).<\/li>\n\n\n\n<li>Horaczek T., D\u0105browski P., Kalaji H.M., <strong>Baczewska-D\u0105browska A.H<\/strong>., Pietkiewicz S., Stepie\u0144 W., Gozdowski D. 2020. JIP-test as a tool for early detection of the macronutrient&#8217;s deficiency in <em>Miscanthus<\/em> plants. Photosynthetica, 58(2), 507-517. DOI: 10.32615\/ps.2019.177 (IF=1,740; MNiSW=70 pkt.).<\/li>\n\n\n\n<li>Dmuchowski W., Br\u0105goszewska P., Gozdowski D., <strong>Baczewska-D\u0105browska A.H.,<\/strong> Chojnacki T., Jozwiak A., Swiezewska E., Suwara I., Gworek, B. 2020. Strategies of urban trees for mitigating salt stress: a case study of eight plant species. Trees, 1-16. doi.org\/10.1007\/s00468-020-02044-0 (IF=2,125; MNiSW=100 pkt.)<\/li>\n\n\n\n<li>Gworek B., Dmuchowski W. <strong>Baczewska-D\u0105browska A.H<\/strong>. 2020. Mercury in the terrestrial environment: a review. Environmental Sciences Europe 32, 128. doi.org\/10.1186\/s12302-020-00401-x (IF=5,394; MNiSW=100 pkt.).<\/li>\n\n\n\n<li><strong>Dembicz I.,<\/strong> Moysiyenko I., Kozub \u0141., Dengler J., Zakharova M., Sudnik-W\u00f3jcikowska B. 2020. Steppe islands in a sea of fields: Where island biogeography meets the reality of a severely transformed landscape. Journal of Vegetation Science 00: 1\u201311. DOI: 10.1111\/jvs.12930 (IF=2,698 MNiSW=100 pkt)<\/li>\n\n\n\n<li>Grebieniow A., Korczak\u2011Abshire M., <strong>Gasek A<\/strong>., G\u00f3recka\u2011Bruzda A. y (2020) 43:929\u2013935 Antarctic fur seal (Arctocephalus gazella) annual migration and temporal patterns of on\u2011shore occurrence of leucistic individuals on King George Island. Polar Biology <a href=\"https:\/\/doi.org\/10.1007\/s00300-020-02694-3\" target=\"_blank\" rel=\"noopener\">doi.org\/10.1007\/s00300-020-02694-3<\/a> (IF= 2,000; MNiSW=70 pkt.)<\/li>\n\n\n\n<li><strong>Gizi\u0144ska A<\/strong>., <strong>Miodek A<\/strong>.,<strong> Kojs P<\/strong>. 2021. Rays hamper intrusive growth of vessel elements. Trees. <a href=\"https:\/\/doi.org\/10.1007\/s00468-020-02071-x\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1007\/s00468-020-02071-x<\/a> (IF = 2,125; MNiSW = 100 pkt.)<\/li>\n\n\n\n<li><strong>Grzyb M.<\/strong>, Wr\u00f3bel-Marek J., Kurczy\u0144ska E., Sobczak M., <strong>Miku\u0142a A.<\/strong> 2020. Symplasmic isolation contributes to somatic embryo induction and development in the tree fern <em>Cyathea delgadii<\/em> Sternb. Plant and Cell Physiology. 61(7):1273-1284. Doi:10.1093\/pcp\/pcaa058 (IF= 4,062; MNiSW=140 pkt.)<\/li>\n\n\n\n<li><strong>Jura-Morawiec J.<\/strong>, <strong>Marcinkiewicz J.<\/strong> 2020. Wettability, water absorption and water storage in rosette leaves of the dragon tree (<em>Dracaena draco<\/em>)<em>. <\/em>Planta, 252: 30. DOI:10.1007\/s00425-020-03433-y (IF=3,390; MNiSW=100 pkt.)<\/li>\n\n\n\n<li><strong>Jura-Morawiec J.<\/strong>, Monroy P., Marrero A., Tulik M. 2020. Aerial root structure and its significance for function in <em>Dracaena draco<\/em>.\u00a0 Journal of Plant Growth Regulation DOI:10.1007\/s00344-020-10142-z (IF=2,672; MNiSW=70 pkt.)<\/li>\n\n\n\n<li>Mad\u011bra P., Forrest A., Hanacek P., Vahalik P., Gebauer R., Plichta R., Jupa R., Van Rensburg J., Morris M., Nadezhdina N., Vanickova L., <strong>Jura-Morawiec J.<\/strong>, Wiland-Szyma\u0144ska J., Kalivodova H., Lengalova K., Rejzek M., Habrova H. 2020 What we know and what we do not know about dragon trees? Forests, 11: 236. DOI:10.3390\/f11020236 (IF=2,221; MNiSW=100 pkt.)<\/li>\n\n\n\n<li>Garc\u00eda-Verdugo C., Monroy P., Pugnaire F.I.,<strong> Jura-Morawiec J.<\/strong>, Moreira X., Flexas J. 2020. Functional traits and insular colonization: subtropical islands as a melting pot of trait diversity in a widespread lineage. Journal of Biogeography, 47: 2362-2376. DOI:10.1111\/jbi.13956 (IF=3,723; MNiSW=140 pkt.)<\/li>\n\n\n\n<li>Tulik M., Grochowina A., <strong>Jura-Morawiec J.<\/strong>, Bijak Sz. 2020. <a href=\"https:\/\/www.mdpi.com\/1999-4907\/11\/2\/134\" target=\"_blank\" rel=\"noopener\">Groundwater level fluctuations affect the mortality of black alder (<em>Alnus glutinosa<\/em> Gaertn.)<\/a>. Forests, 11: 134. DOI:10.3390\/f11020134 (IF=2,221; MNiSW=100 pkt.)<\/li>\n\n\n\n<li><strong>Miodek A<\/strong>., W\u0142och W., Iqbal M., <strong>Gizi\u0144ska A<\/strong>., <strong>Kojs P<\/strong>. 2021. Controversy over the Mode of Growth of Cambial Cylinder. The Botanical Review. <a href=\"https:\/\/doi.org\/10.1007\/s12229-020-09237-9\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.1007\/s12229-020-09237-9<\/a> (IF = 1,667; MNiSW = 100 pkt.)<\/li>\n\n\n\n<li><strong>Monder M.J., Woli\u0144ski K., Niedzielski M<\/strong>. 2020. Effect of Phenological Stage and Rooting Enhancers on Physiological Parameters in Stem Cuttings in the Process of Rhizogenesis of Rosa \u00d7 alba \u2018Maiden\u2019s Blush\u2019. Special Issue: Impact of Biostimulants on Crops. Agriculture 10(11), 572; https:\/\/doi.org\/10.3390\/agriculture10110572. (IF 2,072; 100 pkt)<\/li>\n\n\n\n<li><strong>Nowak, A., \u015awierszcz, S<\/strong>., Nowak, S., Hisorev, H., <strong>Klichowska, E<\/strong>., Wr\u00f3bel, A., Nobis, A., &amp; Nobis, M. (2020). Red List of vascular plants of Tajikistan \u2013 the core area of the Mountains of Central Asia global biodiversity hotspot. Scientific Reports, 10, 6235. https:\/\/doi.org\/10.1038\/s41598-020-63333-9 (IF= 3,998; MNiSW=140)<\/li>\n\n\n\n<li>Baiakhmetov E., Nobis M., <strong>Nowak A<\/strong>., Gudkova P. 2020. Morphological and genome-wide evidence for natural hybridisation within the genus Stipa (Poaceae). Scientific Reports 10(1), 13803. (IF=3,998; MNiSW=140 pkt.)<\/li>\n\n\n\n<li>Nobis, M., Marciniuk, J., Marciniuk, P., <strong>Nowak A.<\/strong>, (&#8230;), Vasjukov, V.M., Vershinin, N.A. 2020. Contribution to the flora of Asian and European countries: new national and regional vascular plant records, 9. Turkish Journal of Botany 44(4): 455-480. (IF=1,109; MNiSW=40 pkt.)<\/li>\n\n\n\n<li>Ellis, L.T., Afonina, O.M., Czernyadjeva, I.V., (&#8230;), <strong>Nowak A.,<\/strong> Wierzgo\u0144, M., Graulich, A. 2020. New national and regional bryophyte records, 63. Journal of Bryology (IF=1,152; MNiSW=40 pkt.)<\/li>\n\n\n\n<li>Boczkowska, M., B\u0105czek, K., Kosakowska, O., <strong>Ruci\u0144ska, A., Podyma, W<\/strong>., &amp; W\u0119glarz, Z. (2020). Genome-Wide Diversity Analysis of Valeriana officinalis L. Using DArT-seq Derived SNP Markers. Agronomy, 10(9), 1346. (IF=1,68 MNiSW=100 pkt)<\/li>\n\n\n\n<li><strong>\u015awierszcz, S., <\/strong>Nobis, M., Swacha, G., K\u0105cki, Z., Dembicz, I., Waindzoch, K., Nowak, S., &amp; <strong>Nowak, A.<\/strong> 2020. Pseudosteppes and related grassland vegetation in the Pamir-Alai and western Tian Shan Mts \u2013 the borderland of the Irano-Turanian and Euro-Siberian regions. Tuexenia, 40, 147\u2013173. https:\/\/doi.org\/10.14471\/2020.40.04 (IF=1; MNiSW=70)<\/li>\n\n\n\n<li><strong>Targo\u0144ska-Karasek M<\/strong>, Boczkowska M, <strong>Podyma W, <\/strong><strong>Pa\u015bnik M., <\/strong><strong>Niedzielski M<\/strong><strong>, <\/strong><strong>Ruci\u0144ska A<\/strong>, Nowak-Zyczynska Z &amp; Rakoczy-Trojanowska M. Investigation of obsolete diversity of rye (Secale cereale L.) using multiplexed SSR fingerprinting and evaluation of agronomic traits. Journal of Applied Genetics. 2020 Dec;61(4):513-529. DOI: 10.1007\/s13353-020-00579-z. (IF=2,027 MNiSW=70 pkt)<\/li>\n\n\n\n<li><strong>Tomiczak K.<\/strong>, 2020. Molecular and cytogenetic description of somatic hybrids between <em>Gentiana cruciata<\/em> L. and <em>G. tibetica<\/em> King. J. Appl. Genetics 61:13\u201324. doi: \/10.1007\/s13353-019-00530-x (IF= 2,027; MNiSW=100).<\/li>\n\n\n\n<li>Banasiuk R, Krychowiak M, Swigon D, <strong>Tomaszewicz W<\/strong>, Michalak A, Chylewska A, Ziabka M, Lapinski M, Koscielska B, Narajczyk M, Aleksandra Krolicka A 2020 Carnivorous plants used for green synthesis of silver nanoparticles with broad-spectrum antimicrobial activity. Arabian Journal of Chemistry 13 (1): 1415-1428 DOI: 10.1016\/j.arabjc.2017.11.013 (IF=4,762; MNiSW=70).<\/li>\n\n\n\n<li>Boczkowska M., <strong>Ruci\u0144ska A<\/strong>., Olszak M., <strong>Nowak A.<\/strong> 2020. Ocena przydatno\u015bci loci barkodowych do identyfikacji gatunk\u00f3w ro\u015blin \u0142\u0105k i muraw kserotermicznych. Biuletyn Instytutu Ochrony i Aklimatyzacji Ro\u015blin 288: 77-83 doi: 10.37317\/biul-2020-0010 (MNiSW=20).<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>b)\u00a0<\/a>inne publikacje recenzowane<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li><strong>Jura-Morawiec J. <\/strong>2020. Anatom\u00eda functional de la \u201cmadera\u201d del drago (<em>Dracaena draco<\/em>). Bot\u00e1nica Macaron\u00e9sica 31, w druku (MNiSW=5 pkt.)<\/li>\n\n\n\n<li><strong>Boczkowska, M., Ruci\u0144ska, A., Olszak, M., &amp; Nowak, A.<\/strong> 2020. Ocena przydatno\u015bci loci barkodowych do identyfikacji gatunk\u00f3w ro\u015blin \u0142\u0105k i muraw kserotermicznych. Komunikat. <em>Biuletyn Instytutu Hodowli I Aklimatyzacji Ro\u015blin<\/em>, (288), 77-83. <a href=\"https:\/\/doi.org\/10.37317\/biul-2020-0010\" target=\"_blank\" rel=\"noopener\">https:\/\/doi.org\/10.37317\/biul-2020-0010<\/a> (MNiSW=20 pkt.)<\/li>\n\n\n\n<li><strong>Kapler A.<\/strong> 2020. Program restytucji i ochrony wybranych gatunk\u00f3w wymar\u0142ych b\u0105d\u017a krytycznie zagro\u017conych w Ojcowskim Parku Narodowym. Pr\u0105dnik. Prace Muzeum im. W. Szafera 30: 27-56 (MNiSW=4pkt)<\/li>\n\n\n\n<li><strong>Kapler A.<\/strong> 2020. Wsp\u00f3\u0142praca mi\u0119dzy Ojcowskim PN a PAN Ogrodem Botanicznym CZRB: metody, osi\u0105gni\u0119cia, wyzwania przysz\u0142o\u015bci. Pr\u0105dnik. Prace Muzeum im. W.\u00a0Szafera 30: 117-136 (MNiSW=4 pkt).<\/li>\n\n\n\n<li><strong>Kapler A.<\/strong> 2020. Nowe stanowisko <em>Bromus secalinus<\/em> w Polsce \u015brodkowej. Fragmenta Floristica et Geobotanica Polonica 27, 2 (MNiSW= 20 pkt) w druku<\/li>\n\n\n\n<li><strong>Kapler A.<\/strong> 2020. Efemeryczny pojaw <em>Ambrosia artemisiifolia<\/em> (Asteraceae) w\u00a0Warszawie. Fragmenta Floristica et Geobotanica Polonica 27, 2 (MNiSW=20 pkt) w druku<\/li>\n\n\n\n<li><strong>Kapler A. 2020<\/strong>. Edukacja doros\u0142ych na rzecz walki ze \u015bwiatowym kryzysem zapyle\u0144. W: \u0141ais S., Milczarek K. (red.) Edukacja doros\u0142ych. Globalny uk\u0142ad odporno\u015bciowy. Wyd. EPALE, Warszawa.<\/li>\n\n\n\n<li><strong>Kojs P.<\/strong>, 2020. Ulotne acz czu\u0142e. ACADEMIA &#8211; magazyn Polskiej Akademii Nauk; nr 1\/61\/2020 \u201cCzu\u0142o\u015b\u0107\u201d<\/li>\n\n\n\n<li><strong>Nowak, A.,<\/strong> <strong>\u015awierszcz, S.,<\/strong> Nowak, S., &amp; Nobis, M. (2020). Classification of tall-forb vegetation in the Pamir-Alai and western Tian Shan Mountains (Tajikistan and Kyrgyzstan, Middle Asia). Vegetation Classification and Survey, 1, 191\u2013217. https:\/\/doi.org\/10.3897\/VCS\/2020\/60848<\/li>\n<\/ol>\n\n\n\n<h2 class=\"wp-block-heading\"><a>c)\u00a0Monografie, <\/a>rozdzia\u0142y w monografiach \/ ksi\u0105\u017cce w j\u0119z. angielskim i innym<\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li><strong>Nowak, A.,<\/strong> Nobis, M., Nowak, S., Nobis, A., Wr\u00f3bel, A., <strong>\u015awierszcz, S.,<\/strong> Klichowska, E., Dembicz, I. &amp; Kusza, G. 2020. Illustrated flora of Tajikistan and adjacent areas. Polish Academy of Sciences, Botanical Garden Center for Biological Diversity Conservation and Polish Botanical Society, Warszawa-Krak\u00f3w-Opole, 768pp. Monografia (MNiSW=80)<\/li>\n\n\n\n<li>Sierakowski M., <strong>Nowak A.,<\/strong> \u017by\u0142a P. 2020. Rezerwaty przyrody w wojew\u00f3dztwie opolskim. Przesz\u0142o\u015b\u0107, tera\u017aniejszo\u015b\u0107, przysz\u0142o\u015b\u0107. Wyd. Klubu Przyrodnik\u00f3w, \u015awiebodzin. ss. 302. Rozdzia\u0142 w monografii (MNiSW=5 pkt.)<\/li>\n\n\n\n<li><strong>Nowak A.,<\/strong> Nowak S., Nobis M. 2020. The Pamir-Alai Mountains (Middle Asia: Tajikistan). In: Noroozi J. Plant Biogeography and Vegetation of High Mountains of Central and South-West Asia. pp. 1-42. Springer, Nature, Switzerland AG. Rozdzia\u0142 w monografii (MNiSW=20 pkt.)<\/li>\n\n\n\n<li>A. K\u0119b\u0142owska, <strong>J. Puchalski, A. Ruci\u0144ska, A. Kapler<\/strong>, <strong>A. Zn\u00f3j<\/strong>. 2020. &#8222;Monitoring jako narz\u0119dzie oceny udatno\u015bci restytucji dzwonecznika wonnego <em>Adenophora liliifolia<\/em> (L.) Besser w Kampinoskim Parku Narodowym&#8221;.<\/li>\n<\/ol>\n\n\n\n<p class=\"wp-block-paragraph\">W: A. Olszewski. A. Andrzejewska (red.). &#8222;Aktualny Stan i Przemiany \u015arodowiska Przyrodniczego Geoekosystem\u00f3w jako Cecha Wska\u017anikowa Zmian Klimatu&#8221;. Zintegrowany Monitoring \u015arodowiska Przyrodniczego.&nbsp; Biblioteka Monitoringu \u015arodowiska. Inspekcja Ochrony \u015arodowiska. Wydawnictwo Naukowe Bogucki, Pozna\u0144, Vol. 33 (2020), ss. 51 &#8211; 69. Rozdzia\u0142 w monografii (MNiSW=20 pkt.)<\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Denise F.D.,Dajdok Z.,<strong> Nowak A.,<\/strong> Zalewska-Ga\u0142osz J., Szyma\u0144ski W.M., Beza M., Michalska-Hejduk D., B\u0105czek K., W\u0119glarz Z., Bomanowska A., <strong>Kapler A.,<\/strong> Nowak T., Kloc G., Podyma W. 2020. Lista dzikich gatunk\u00f3w pokrewnych ro\u015blinom uprawnym wyst\u0119puj\u0105cych w Polsce, ss. 21-81. W: Dostatny D.F., Dajdok Z. (red.). Dzikie gatunki pokrewne ro\u015blinom uprawnym wyst\u0119puj\u0105ce w Polsce. Lista, zasoby i zagro\u017cenia. Wyd. Kontekst, Radzik\u00f3w-Pozna\u0144. Rozdzia\u0142 w monografii (MNiSW=20 pkt.)<\/li>\n\n\n\n<li><strong>Kapler A. <\/strong>2020. Dzikie gatunki pokrewne ro\u015blinom uprawnym o znaczeniu barwierskim i w\u0142\u00f3knodajnym (razem z G. Klocem, D. Fu-Dostatny i M. Niemczykiem), ss. 107-113. W: Dostatny D. F., Dajdok Z. (red.), 2020. Dzikie gatunki pokrewne ro\u015blinom uprawnym wyst\u0119puj\u0105ce w Polsce. Lista zasoby i\u00a0zagro\u017cenia. Radzik\u00f3w-Pozna\u0144. Wyd. Kontekst. Rozdzia\u0142 w monografii (MNiSW=20 pkt.)<\/li>\n\n\n\n<li>Dostatny D.F., Kloc G., Podyma W.,<strong> Kapler A., Niemczyk M<\/strong>., Beza M. Kozio\u0142 C. 2020. Zasoby dziko wyst\u0119puj\u0105cych gatunk\u00f3w u\u017cytkowych oraz pokrewnych ro\u015blinom uprawnym w polskich bankach gen\u00f3w i nasion oraz w kolekcjach ogrod\u00f3w botanicznych i arboret\u00f3w. ss 145-152 W: Dostatny D.F., Dajdok Z. (red.). Dzikie gatunki pokrewne ro\u015blinom uprawnym wyst\u0119puj\u0105ce w Polsce. Lista, zasoby i\u00a0zagro\u017cenia. Wyd. Kontekst, Radzik\u00f3w-Pozna\u0144. Rozdzia\u0142 w monografii (MNiSW=20 pkt.)<\/li>\n\n\n\n<li>Dajdok Z., <strong>Nowak A.<\/strong>, Kloc G., Dostatny D.F. 2020. Ro\u015bliny chronione i zagro\u017cone wymarciem reprezenotwane w\u015br\u00f3d dzikich gatunk\u00f3w pokrewnych ro\u015blinom uprawnym w Polsce, ss. 139-144. W: Dostatny D. F., Dajdok Z. (red.), 2020. Dzikie gatunki pokrewne ro\u015blinom uprawnym wyst\u0119puj\u0105ce w Polsce. Lista zasoby i\u00a0zagro\u017cenia. IHAR, Radzik\u00f3w-Pozna\u0144, ss.408. Wyd. Kontekst. Rozdzia\u0142 w\u00a0monografii (MNiSW=20 pkt.)<\/li>\n\n\n\n<li><strong>Kapler. A., i in.<\/strong> Charakterystyka wybranych gatunk\u00f3w (<em>Empetrum nigrum<\/em> L. ss. 165-167, <em>Berberis vulgaris<\/em> L. ss. 168-169, Hedera helix L. ss. 171-172, <em>Padus avium<\/em> Mill. Ss. 191-192, <em>Allium paradoxum<\/em> G. Don. ss.198-199, <em>Carlina onopordifolia<\/em> Besser, ss. 208-209, <em>Juniperus communis<\/em> L. ss. 222-223, <em>Rannunculus arvensis<\/em> L. ss. 225-226, <em>Hieracium atramentarium<\/em> Nageli &amp; A. Peter ss. 227-228, <em>Fraxinus excelsior <\/em>L. ss. 229-230, <em>Rubus ideus<\/em> L. ss. 231-233, <em>Viburnum opulus<\/em> L. ss. 235-236 <em>Iris pseudoacorus<\/em> L. ss. 250-252,<em> Trapa natans <\/em>L. ss. 253-254, <em>Frangula alnus<\/em> Mill. ss. 256-258, <em>Lilium bulbiferum<\/em> L. ss. 264-265, <em>Butomus umbellatus<\/em> L. ss. 269-271, <em>Papaver argemone<\/em> L. ss. 274- 275, <em>Glyceria nemoralis<\/em> R. Uechtr. ss. 276-277, <em>Adonis vernalis<\/em> L. ss. 280-281, <em>Dryopteris filix-mas<\/em> L. ss. 287-288<em>, Alnus incana<\/em> (L.) Moench ss. 291-293, <em>Typha latifolia<\/em> L. ss. 295-297, <em>Pastinaca sativa<\/em> L. ss. 297-298, <em>Urtica dioica<\/em> L. ss. 303-305, <em>Bupleurum rotundifolium<\/em> L. ss.310-312, <em>Galium cracoviense<\/em> Ehrend ss. 312-313, <em>Rhododendron ferrugineum<\/em> L. ss. 320-321, <em>Agrimonia eupatoria<\/em> L. ss. 326-327, <em>Pulsatilla patens<\/em> (L.) Mill. ss. 328-329, <em>Serratula tinctoria<\/em> L. ss. 329-330, <em>Sisymbrium polymorphum<\/em> (Murray) Roth. ss. 336-337, <em>Prunus spinosa<\/em> L. ss. 341-343, <em>Phragmites australis<\/em> (Cav.) Trin. ex Steud ss. 344-345, <em>Carex nigra<\/em> (L.) Reichard ss. 350-351, <em>Salix fragilis<\/em> L. ss. 355-357, <em>Echium russicum<\/em> J.F. Gmell. ss. 365-367 W: Dostatny D. F., Dajdok Z. (red.), 2020. Dzikie gatunki pokrewne ro\u015blinom uprawnym wyst\u0119puj\u0105ce w Polsce. Lista zasoby i zagro\u017cenia. Radzik\u00f3w-Pozna\u0144. Wyd. Kontekst. Rozdzia\u0142 w monografii (MNiSW=20 pkt.)<\/li>\n<\/ul>\n\n\n\n<h2 class=\"wp-block-heading\"><a>d)\u00a0ksi\u0105\u017cki popularnonaukowe<\/a><\/h2>\n\n\n\n<ol class=\"wp-block-list\">\n<li>Praca zbiorowa. 2020. \u201cOgrody botaniczne i arboreta Polski\u201d Wyd. 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