- Details
- Written by: Grzegorz Płócieniak
- Category: Employees
- Hits: 19
Research focus:
I conduct research on seed dormancy and germination. My work focuses on analysing the role of plant hormones and gene expression at the protein and RNA levels, using epigenetics, proteomics, and transcriptomics to study how trees respond to climate change and environmental stress.
As part of my research projects, I examine, for example, the effect of temperature on the regulation of seed dormancy and germination, the epigenetic adaptive mechanisms of trees, and the developmental reprogramming of plants under biotic and abiotic stress factors.
My interdisciplinary approach combines molecular, biochemical, and ecological aspects, allowing for a comprehensive understanding of adaptive processes in woody plants.
Keywords:
seed dormancy and germination, plant hormones, epigenetics, proteomics, transcriptomics, tree ecology, climate change
Publications>
- Pawłowski T.A., Suszka J., Mucha J., Zadworny M., Alipour S., Kurpisz B., Chmielarz P., Jagodziński A.M., Chmura D.J. 2024. Climate legacy in seed and seedling traits of European beech populations. Frontiers in Plant Science 15: 1355328. https://doi.org/10.3389/fpls.2024.1355328
- Alagoz S.M., Hadi H., Toorchi M., Pawłowski T.A., Lajayer B.A., Price G.W., Farooq M., Astatkie T. 2023. Morpho-physiological responses and growth indices of triticale to drought and salt stresses. Scientific Reports 13(1): 8896. https://www.nature.com/articles/s41598-023-36119-y
- Kurpisz B., Pawłowski T.A. 2022. Epigenetic mechanisms of tree responses to climatic changes. International Journal of Molecular Sciences 23(21): 13412. https://doi.org/10.3390/ijms232113412
- Klupczyńska E.A., Pawłowski T.A. 2021. Regulation of seed dormancy and germination mechanisms in a changing environment. International Journal of Molecular Sciences 22: #1357. https://doi.org/10.3390/ijms22031357
- Pawłowski T.A., Bujarska-Borkowska B., Suszka J., Tylkowski T., Chmielarz P., Klupczyńska E.A., Staszak A.M. 2020. Temperature regulation of primary and secondary seed dormancy in Rosa canina L.: findings from proteomic analysis. International Journal of Molecular Sciences 21: #7008. https://doi.org/10.3390/ijms21197008
- Mucha J, Pawłowski T.A., Klupczyńska E.A., Guzicka M., Zadworny M. 2019. The effect of hydroxamic siderophores structure on acetylation of histone H3 and alpha tubulin in Pinus sylvestris root cells. International Journal of Molecular Sciences 20(23): #6099. https://doi.org/10.3390/ijms20236099
- Mucha J., Napierała-Filipiak A., Gabała E., Pawłowski T.A., Zadworny M. 2019. Redistribution of iron and hydrogen peroxide in Pinus sylvestris roots in response to trophically diverse fungi. European Journal of Plant Pathology 153: 1275-1286. https://doi.org/10.1007/s10658-018-01641-7
- Pawłowski T.A., Klupczyńska E.A., Staszak A.M., Suszka J. 2019. Proteomic analysis of black poplar (Populus nigra L.) seed storability. Annals of Forest Science 76: #104. https://doi.org/10.1007/s13595-019-0887-y
- Staszak A.M., Pers-Kamczyc E., Klupczyńska E.A., Pawłowski T.A. 2019. Expression of abscisic and gibberellic acid signalling factors in Fagus sylvatica L. seeds during dormancy breaking and germination. Dendrobiology 81: 22-30. http://dx.doi.org/10.12657/denbio.081.003
- Staszak A.M., Rewers M., Sliwinska E, Klupczyńska E.A., Pawłowski T.A. 2019. DNA synthesis pattern, proteome, and ABA and GA signaling in developing seeds of Norway maple (Acer platanoides). Functional Plant Biology 46(2): 152-164. https://doi.org/10.1071/FP18074
- Guzicka M., Pawłowski T.A., Staszak A., Rożkowski R., Chmura D.J. 2018. Molecular and structural changes in vegetative buds of Norway spruce during dormancy in natural weather conditions. Tree Physiology 38(5): 721-734. https://doi.org/10.1093/treephys/tpx156
- Rurek M., Czołpińska M., Pawłowski T.A., Krzesiński, W., Spiżewski, T. 2018. Cold and heat stress diversely alter both cauliflower respiration and distinct mitochondrial proteins including OXPHOS components and matrix enzymes. International Journal of Molecular Sciences 19(3): #877. https://doi.org/10.3390/ijms19030877
- Pawłowski T.A., Staszak A.M., Karolewski P., Giertych M.J. 2017. Plant development reprogramming by cynipid gall wasp: proteomic analysis. Acta Physiologiae Plantarum 39: #114. https://doi.org/10.1007/s11738-017-2414-9
- Staszak A.M., Guzicka M., Pawłowski T.A. 2017. Signalling regulators of abscisic and gibberellic acid pathways are involved in dormancy breaking of Norway maple (Acer platanoides L.) seeds. Acta Physiologiae Plantarum 39(11): #251. https://doi.org/10.1007/s11738-017-2544-0
- Pawłowski T.A., Staszak A.M. 2016. Analysis of the embryo proteome of sycamore (Acer pseudoplatanus L.) seeds reveals a distinct class of proteins regulating dormancy release. Journal of Plant Physiology 195: 9-22. https://doi.org/10.1016/j.jplph.2016.02.017
- Staszak A.M., Pawłowski T.A. 2014. Proteomic analysis of embryogenesis and the acquisition of seed dormancy in Norway maple (Acer platanoides L.). International Journal of Molecular Sciences 15(6): 10868-10891. https://doi.org/10.3390/ijms150610868
- Staszak A.M., Pawłowski T.P. 2012. Forest tree research in post genomic era. Introduction to system biology of broadleaves. Dendrobiology 68: 113-123.
- Pawłowski T. 2010. Proteomic approach to analyze dormancy breaking of tree seeds. Plant Molecular Biology 73: 15-25. https://doi.org/10.1007/s11103-010-9623-6
- Seltzer V., Pawłowski T., Evrard J.-L, Canaday J., Herzog E., Schmit A.-C. 2008. Plant gamma-TuSC-like components: their role in microtubule nucleation. In: The Plant Cytoskeleton: a Key Tool for Agro-Biotechnology. Blume Y.B. , Baird W.V., Yemetz A.I., Brevario D. Eds, Springer Verlag. pp 11-20. https://doi.org/10.1007/978-1-4020-8843-8_1
- Faurobert M., Mihr C., Bertin N., Pawłowski T., Negroni L., Sommerer N. and Causse M. 2007. Major proteome variations associated with cherry tomato pericarp development and ripening. Plant Physiology 143: 1327-1346. https://doi.org/10.1104/pp.106.092817
- Pawłowski T. 2007. Proteomics of European beech (Fagus sylvatica L.) seed dormancy breaking: influence of abscisic and gibberellic acids. Proteomics 7: 2246-2257. https://doi.org/10.1002/pmic.200600912
- Mihr C., Faurobert M., Pawłowski T., Bouchet J.P, Sommerer N., Rossignol M., Negroni L., Causse M. 2005. Proteome analysis of organoleptic quality in tomato. Acta Horticulturae 682: 277-283.
- Pawłowski T., Grandbastien M. A., Faurobert M., Mihr C., Causse M. 2005. Proteomics of genetic diversity in relation to tomato fruit size. Acta Horticulturae 682: 285-290. https://doi.org/10.17660/ActaHortic.2005.682.31
- Pawłowski T., Rurek M., Janicka S., Raczyńska K.D., Augustyniak H. 2005. Preliminary analysis of the cauliflower mitochondrial proteome. Acta Physiologiae Plantarum 27: 275-281. https://doi.org/10.1007/s11738-005-0003-9
- Krawiarz K., Pawłowski T. 2004. Toxin of Scotch pine pathogen Heterobasidion annosum (Fr.) Bref. Acta Physiologiae Plantarum 26: 268-269.
- Pawłowski T., Bergervoet J.H.W., Bino R.J., Groot S.P.C. 2004. Cell cycle activity and α-tubulin accumulation during dormancy breaking of Acer platanoides L. seeds. Biologia Plantarum 48: 211-218. https://doi.org/10.1023/B:BIOP.0000033447.27149.85
- Pawłowski T., Kalinowski A. 2003. Qualitative and quantitative changes in proteins in Acer platanoides L. seeds during maturation. Acta Biologica Cracoviensia Series Botanica 45(2): 139-144.
- Seltzer V., Pawłowski T., Campagne S., Canaday J., Erhardt M., Evrard J.L., Herzog E., Schmit A.C. 2003. Multiple microtubule nucleation sites in higher plants. Cell Biology International 27: 267-269. https://doi.org/10.1016/S1065-6995(02)00345-1
- Szczotka Z., Pawłowski T., Krawiarz K. 2003. Proteins and polyamines relation during dormancy breaking of European beech (Fagus sylvatica L.) seeds. Acta Physiologiae Plantarum 25: 423-435. https://doi.org/10.1007/s11738-003-0025-0
- Pawłowski T., Szczotka Z. 2001. Qualitative changes in the proteins of cotyledons during cold and warm stratification of Acer platanoides seeds. Acta Societatis Botanicorum Poloniae 70: 17-23. https://doi.org/10.5586/asbp.2001.003
Projects>
- Epigenetics of stress memory response to drought in Black poplar seedlings. (Original title: Epigenetyka pamięci odpowiedzi na stres suszy sadzonek topoli czarnej). Project funded by the Internal Research Fund of the Institute of Dendrology, Polish Academy of Sciences (FBW_4, DEC-2024/04/ZB/FBW/08). Project duration: 2024–2025. Principal Investigator: Pawłowski T.A.
- Regulation of European beech dormancy and germination mechanisms in variable environments. (Original title:Regulacja mechanizmu spoczynku i kiełkowania nasion buka zwyczajnego w zmiennym środowisku). Project funded by the National Science Centre (OPUS, 2019/33/B/NZ9/02660). Project duration: 2020–2025. Principal Investigator: Pawłowski T.A.
- Functional analysis of proteins associated with the acquisition and release of deep physiological dormancy of seeds. (Original title: Analiza funkcjonalna białek związanych z nabywaniem i ustępowaniem głębokiego spoczynku fizjologicznego nasion). Project funded by the National Science Centre (2011/01/B/NZ9/02868). Project duration: 2011–2015. Principal Investigator: Pawłowski T.A.
- Proteomics of dormancy and germination of selected tree species. (Original title:Proteomika ustępowania spoczynku i kiełkowania nasion wybranych gatunków drzew). Project funded by the Ministry of Science and Higher Education (N N309 2491 33). Project duration: 2007–2011. Principal Investigator: Pawłowski T.A.
- Protein markers of dormancy and germination of selected tree seeds. (Original title: Wskaźniki białkowe ustępowania spoczynku i kiełkowania nasion wybranych gatunków drzew). Project funded by the Scientific Research Committee (3 P06L 026 24). Project duration: 2003–2007. Principal Investigator: Pawłowski T.A.
Public Science Articles>
[Articles in Polish]
- Kurpisz B., Pawłowski T. 2022. Wiosna, czyli słów kilka o japońskiej wiśni. Kórniczanin 11: 20.
- Pawłowski T., Kurpisz B. 2022. Proteiny i proteomika – nauka o białkach. Kórniczanin 13: 22.
- Pawłowski T.A. 2020. Globalne zmiany klimatu a rozmnażanie się drzew. Wszechświat 121: 10-12.
- Pawłowski T.A. 2020. Kiełkowanie nasion drzew – jak przystosować się do zmian klimatu? Las Polski 1: 16-17.
Books and Book Chapetrs>
- Pawłowski T.A., Suszka J., Mucha J., Zadworny M., Alipour S., Kurpisz B., Chmielarz P., Jagodziński A.M., Chmura D.J. 2024. Climate legacy in seed and seedling traits of European beech populations. In: Tomaszewski D., Jagodziński A.M. (eds.). Research and Practice in Forest Ecology. International Scientific Conference for Young Scientists. Kórnik, 8-12 May 2024. Book of abstracts. Bogucki Wydawnictwo Naukowe, Poznań. Pp. 77-83.
- Staszak, A.M., Pawłowski T.A. 2016. Proteomika nasion – w poszukiwaniu markerów spoczynku i kiełkowania. [w:] „Różnorodność biologiczna – od komórki do ekosystemu. Rośliny i grzyby – badania środowiskowe i laboratoryjne” (wersja elektroniczna). Pod redakcją Andrzeja Bajguza i Iwony Ciereszko. Polskie Towarzystwo Botaniczne, Białystok. pp: 73-85. ISBN 978-83-62069-72-9.
- Pawłowski T.A., Staszak A.M. 2014. Putative markers of seed dormancy breaking and germination. Proceedings and results of the international workshop: Current technologies of forest seed treatment. J. V. Muller, C. Kozioł, M. Pałucka (red.). The Kostrzyca Forest Gene Bank, SAR Pomorze, Bydgoszcz, Poland. P. 93.
- Pawłowski T.A. 2012. Perspektywy rozwoju firm z branży zabezpieczeń, scenariusze zmian. Foresight w przedsiębiorstwach. NAUKA – TECHNOLOGIA – WDROŻENIE. Krzysztof Borodako, Michał Nowosielski (eds.). Instytut Zachodni, Poznań. str. 15-31. ISBN 978-83-61736-37-0
- Details
- Written by: Grzegorz Płócieniak
- Category: Employees
- Hits: 25
Research Focus:
I conduct research on the genetic variability of trees using molecular genetic markers.
I apply the results to reconstruct post-glacial migration routes of tree species and
to support conservation and restoration activities. My research interests also include tree selection and seed orchard development.
The main species I focus on are: Taxus baccata, Larix decidua, Picea abies, Populus sp.
Keywords:
population genetics, conservation genetics, genetic diversity, selection, microsatellites
Publications>
- Robak D., Lewandowski A., Żukowska W.B. 2024. Genetic divergence in the natural regeneration of Black Poplar along the Vistula River in Poland. Aquatic Conservation-Marine and Freshwater Ecosystems 34(12): 70028. https://doi.org/10.1002/aqc.70028
- Robak D., Lewandowski A., Żukowska W.B. 2024. Does genotype affect the ability to form root suckers? A case study in black poplar. Dendrobiology 92: 45-52. https://doi.org/10.12657/denbio.092.003
- Żukowska W.B., Purcel A., Lewandowski A. 2024. Selection of locations to enrich the gene pool of a declining tree species in protected areas: The case of black poplar in the Wielkopolska National Park, Poland. Acta Societatis Botanicorum Poloniae 93: 195652.
- Żukowska W.B., Lewandowski A., Wójkiewicz B., Litkowiec M., Rożkowski R., Urbaniak L., Kowalczyk J. 2023. Changes in the gene pool composition of Scots pine depending on the mode of regeneration. Dendrobiology 89: 46-55. https://doi.org/10.12657/denbio.089.005
- Żukowska W.B., Wójkiewicz B., Lewandowski A., László R., Wachowiak W. 2023. Genetic variation of Scots pine (Pinus sylvestris L.) in Eurasia: impact of postglacial recolonization and human-mediated gene transfer. Annals of Forest Science 80: 42. https://annforsci.biomedcentral.com/articles/10.1186/s13595-023-01207-6
- Litkowiec M., Chudzińska M., Pasławska A., Pałucka M., Kozioł Cz., Lewandowski A. 2022. Population history, genetic variation, and conservation status of European white elm (Ulmus laevis Pall.) in Poland. Annals of Forest Science 79(1): 38. https://annforsci.biomedcentral.com/articles/10.1186/s13595-022-01157-5
- Wachowiak W., Żukowska W.B., Perry A., Lewandowski A., Cavers S., Łabiszak B. 2022. Phylogeography of Scots pine in Europe and Asia based on mtDNA polymorphisms. Journal of Systematics and Evolution 00 (0): 1–13. https://doi.org/10.1111/jse.12907
- Wójkiewicz B., Lewandowski A., Żukowska W.B., Litkowiec M., Wachowiak W. 2021. Low effective population size and high spatial genetic structure of black poplar populations from the Oder valley in Poland. Annals of Forest Science 78: # 37. doi: 10.1007/s13595-021-01055-2.
- Żukowska W.B., Wójkiewicz B., Lewandowski A. 2020. Selekcja genomowa w hodowli drzew leśnych – podstawowe założenia, problemy i perspektywy. Sylwan 164(5): 384-391. https://doi.org/10.26202/sylwan.2019100
- Chudzińska M., Litkowiec M., Pałucka M., Pasławska A., Lewandowski A., Kozioł C. 2019. Struktura klonalna wiązu polnego (Ulmus minor Mill.) w Polsce. Sylwan 163: 839-845. https://doi.org/10.26202/sylwan.2019042
- Wójkiewicz B., Żukowska W., Urbaniak L., Kowalczyk J., Litkowiec M., Lewandowski A. 2019. Określenie pochodzenia wyłączonych drzewostanów nasiennych sosny rychtalskiej (Pinus sylvestris L.) z wykorzystaniem markerów mikrosatelitarnych. Sylwan 163: 637-644. https://doi.org/10.26202/sylwan.2019059
- Wójkiewicz B., Żukowska W., Wachowiak W., Lewandowski A. 2019. The genetic assessment of the natural regeneration capacities of black poplar populations in the modern river valley landscapes. Forest Ecology and Management 448: 150-159. https://doi.org/10.1016/j.foreco.2019.06.003
- Litkowiec M., Lewandowski A., Burczyk J. 2018. Genetic status of Polish larch (Larix decidua subsp. polonica (Racib. Domin)) from Chełmowa Mountain: implications for gene conservation. Dendrobiology 80: 101-111. http://dx.doi.org/10.12657/denbio.080.010
- Litkowiec M., Lewandowski A., Wachowiak W. 2018. Genetic variation in Taxus baccata L.: A case study supporting Poland's protection and restoration program. Forest Ecology and Management 409: 148-160. https://doi.org/10.1016/j.foreco.2017.11.026
- Lewandowski A., Litkowiec M. 2017. Genetic structure of the old black poplar population along the bank of the Vistula river in Poland. Acta Societatis Botanicorum Poloniae 86(1): #3524. https://doi.org/10.5586/asbp.3524
- Lorenc-Plucińska G., Walentynowicz M., Lewandowski A. 2017. Poplar growth and wood production on a grassland irrigated for decades with potato starch wastewater. Agroforestry Systems 91: 307-324. https://doi.org/10.1007/s10457-016-9930-2
- Litkowiec M., Plita-Michalak B., Lewandowski A., Iszkuło G. 2015. Homogenous genetic structure in populations of Taxus baccata with varied proportions of male and female individuals. Silva Fennica 49(4): #1236. http://dx.doi.org/10.14214/sf.1236
- Wachowiak W., Wόjkiewicz B., Cavers S., Lewandowski A. 2014. High genetic similarity between Polish and North European Scots pine (Pinus sylvestris L.) populations at nuclear gene loci. Tree Genetics & Genomes 10(4): 1015-1025. https://doi.org/10.1007/s11295-014-0739-8
- Litkowiec M., Plitta B.P., Lewandowski A. 2013. Znaczenie zmienności genetycznej dla ochrony zasobów genowych cisa pospolitego w Europie. Sylwan 157: 754-760. https://doi.org/10.26202/sylwan.2013062
- Dering M., Lewandowski A. 2009. Finding the meeting zone: Where have the northern and southern ranges of Norway spruce overlapped? Forest Ecology and Management 259: 229-235. https://doi.org/10.1016/j.foreco.2009.10.018
- Litkowiec M., Dering M., Lewandowski A. 2009. Utility of two mitochondrial markers for identification of Picea abies refugial origin. Dendrobiology 61: 65-71.
- Chałupka W., Mejnartowicz L., Lewandowski A. 2008. Reconstruction of a lost forest tree population: A case study of Nowary spruce (Picea abies [L.] Karst.). Forest Ecology and Management 255: 2103-2108. https://doi.org/10.1016/j.foreco.2007.12.014
- Dering M., Lewandowski A., Ufnalski K., Kędzierska A. 2008. How far to the east was the migration of white oaks from the Iberia refugium? Silva Fennica42: 327-335. https://doi.org/10.14214/sf.240
- Dering M., Lewandowski A. 2007. Unexpected disproportion observed in species composition between oak mixed stands and their progeny populations. Annals of Forest Science 64: 413-417. https://doi.org/10.1051/forest:2007018
- Kosinska J., Lewandowski A., Chalupka W. 2007. Genetic variability of Scots Pine maternal populations and their progenies. Silva Fennica41: 5-12. https://doi.org/10.14214/sf.304
- Lewandowski A., Wiśniewska M. 2006. Crossability between Pinus uliginosa and its putative parental species Pinus sylvestris and Pinus mugo. Silvae Genetica55: 52-54. https://doi.org/10.1515/sg-2006-0008
- Lewandowski A., Burczyk J., Wachowiak W., Boratyński A., Prus-Głowacki W. 2005. Genetic evaluation of seeds of highly endangered Pinus uliginosa Neumann from Wegliniec reserve for ex-situ conservation program. Acta Societatis Botanicorum Poloniae 74 (3): 237-242. https://doi.org/10.5586/asbp.2005.030
- Wachowiak W., Lewandowski A., Prus-Głowacki W. 2005. Reciprocal controlled crosses between Pinus sylvestris and P. mugo verified by a species-specific cpDNA marker. Journal of Applied Genetics 46(1): 41-43.
- Boratyński A., Boratyńska K., Lewandowski A., Gołąb Z., Kiciński P. 2003. Evidence of the possibility of natural reciprocal crosses between Pinus sylvestris and P. uliginosa based on the phenology of reproductive organs. Flora198: 377-388. https://doi.org/10.1078/0367-2530-00110
Projects>
- Selection of populations and genotypes of Black Poplar for conservation and restoration of the species in areas managed by the State Forests. (Original title: Wybór populacji i genotypów topoli czarnej na potrzeby ochrony i restytucji gatunku na obszarach zarządzanych przez Lasy Państwowe). Project funded by the General Directorate of State Forests (MZ.271.3.7.2023). Project duration: 2023–2027. Principal Investigator: Lewandowski A.
- Vegetative propagation of selected Black Poplar individuals - Stage III. (Original title: Rozmnażanie wegetatywne wybranych osobników topoli czarnej - etap III). Project funded by the Wielkopolska National Park (T/2023/8). Project duration: 2023-2024. Principal Investigator: Lewandowski A.
- Management of a model larch seed orchard in the Wejherowo Forest District. (Original title: Prowadzenie modelowej plantacji nasiennej modrzewia w Nadleśnictwie Wejherowo). Project funded by the General Directorate of State Forests (EO.271.3.1.2021). Project duration: 2021–2024. Principal Investigator: Lewandowski A.
- Analysis of the origin of Norway spruce in the Forest Divisions: Białowieża, Browsk and Hajnówka. (Original title: Analiza pochodzenia świerka pospolitego w Nadleśnictwach: Białowieża, Browsk i Hajnówka). Project funded by the General Directorate of State Forests (OR.271.3.3.2016). Project duration: 2016–2017. Principal Investigator: Lewandowski A.
- Establishment of a model larch seed plantation based on dwarfing rootstocks. (Original title: Założenie modelowej plantacji nasiennej modrzewia w oparciu o podkładki skarlające). Project funded by the General Directorate of State Forests (EO-2717-5/13). Project duration: 2013-2018. Principal Investigator: Lewandowski A.
- Selection of genotypes and populations of the common yew (Taxus baccata) to protect genetic variability (Research supporting the Yew restitution program in Poland). (Original title: Wybór genotypów i populacji cisa pospolitego (Taxus baccata L.) do ochrony zmienności genetycznej (Badania wspomagające program restytucji cisa pospolitego w Polsce)).Project funded by the General Directorate of State Forests (OR-2717/12/08). Project duration: 2008. Principal Investigator: Lewandowski A.
Public Science Articles>
[Articles in Polish}
- Lewandowski A., Litkowiec M. 2023. Zmienność wiązu szypułkowego w Polsce. Las Polski 22: 20-21.
- Lewandowski A., Pietras M., Litkowiec M. 2021. Czy w Puszczy Białowieskiej występuje świerk pochodzenia alpejskiego? Las Polski 10: 20-21.
- Żukowska W.B., Wójkiewicz B., Lewandowski A. 2021. Genetyka w służbie lasom. Las Polski 4: 18-19.
- Lewandowski A., Wójkiewicz B., Żukowska W. 2020. Zmiany klimatyczne – czas na decyzje w polskim leśnictwie. Las Polski 22: 16-17.
- Lewandowski A., Chmura D., Wójkiewicz B., Żukowska W. 2019. Hodowla lasu w zmieniającym się klimacie. Academia 3-4/59-60: 19-21.
- Wójkiewicz B., Żukowska W.B., Lewandowski A. 2020. Topola czarna – gatunkiem ustępującym z siedlisk lasów łęgowych w Polsce. Las Polski 23: 23-24.
- Lewandowski A. 2019. Modelowa plantacja nasienna modrzewia polskiego w Nadleśnictwie Wejherowo. Las Polski 3: 12-13.
- Chmura D.J., Burczyk J., Kowalczyk J., Lewandowski A. 2017. Plantacje a bioróżnorodność. Las Polski 2: #35.
- Lewandowski A., Chmura D.J. 2014. Narodowy Program Leśny bez hodowli selekcyjnej? Las Polski 11: #17.
- Lewandowski A., Chmura D.J. 2014. Co nowego w genetyce drzew leśnych? Las Polski 3: #10.
- Chmura D.J., Lewandowski A. 2013. Jest miejsce dla genetycznego ulepszania drzew. Las Polski 8: 24-25.
Books and Book Chapters>
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- Written by: Grzegorz Płócieniak
- Category: Employees
- Hits: 13
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- Written by: Grzegorz Płócieniak
- Category: Employees
- Hits: 11
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