Spatial patterns of vascular plant species richness in Poland - a data set.


Journal

Scientific data
ISSN: 2052-4463
Titre abrégé: Sci Data
Pays: England
ID NLM: 101640192

Informations de publication

Date de publication:
18 08 2023
Historique:
received: 16 03 2023
accepted: 04 08 2023
medline: 21 8 2023
pubmed: 19 8 2023
entrez: 18 8 2023
Statut: epublish

Résumé

Recognition of species richness spatial patterns is important for nature conservation and theoretical studies. Inventorying species richness, especially at a larger spatial extent is challenging, thus different data sources are joined and harmonized to obtain a comprehensive data set. Here we present a new data set showing vascular plant species richness in Poland based on a grid of 10 × 10 km squares. The data set was created using data from two sources: the Atlas of Distribution of Vascular Plants in Poland and the Polish Vegetation Database. Using this data set, we analysed 2,160 species with taxonomical nomenclature according to the Euro + Med PlantBase checklist in 3,283 squares covering the entire territory of Poland (ca. 312,000 km

Identifiants

pubmed: 37596254
doi: 10.1038/s41597-023-02446-y
pii: 10.1038/s41597-023-02446-y
pmc: PMC10439123
doi:

Types de publication

Dataset Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

542

Informations de copyright

© 2023. Springer Nature Limited.

Références

Kreft, H. & Jetz, W. Global patterns and determinants of vascular plant diversity. Proceedings of the National Academy of Sciences 104, 5925–5930 (2007).
doi: 10.1073/pnas.0608361104
Divíšek, J. & Chytrý, M. High-resolution and large-extent mapping of plant species richness using vegetation-plot databases. Ecological Indicators 89, 840–851 (2018).
doi: 10.1016/j.ecolind.2017.11.005
Wild, J. et al. Plant distribution data for the Czech Republic integrated in the Pladias database. Preslia 91, 1–24 (2019).
doi: 10.23855/preslia.2019.001
Brummitt, N., Araújo, A. C. & Harris, T. Areas of plant diversity—What do we know? Plants People Planet 3, 33–44 (2020).
doi: 10.1002/ppp3.10110
Díaz, S. et al. Pervasive human-driven decline of life on Earth points to the need for transformative change. Science 366, eaax3100 (2019).
doi: 10.1126/science.aax3100 pubmed: 31831642
Wüest, R. et al. Macroecology in the age of Big Data–Where to go from here? Journal of Biogeography 47, 1–12 (2020).
doi: 10.1111/jbi.13633
Grenié, M. et al. Harmonizing taxon names in biodiversity data: A review of tools, databases and best practices. Methods in Ecology and Evolution 14, 12–25 (2021).
doi: 10.1111/2041-210X.13802
Petřík, P., Pergl, J. & Wild, J. Recording effort biases the species richness cited in plant distribution atlases. Perspectives in Plant Ecology, Evolution and Systematics 12, 57–65 (2010).
doi: 10.1016/j.ppees.2009.06.004
Govaerts, R., Nic Lughadha, E., Black, N., Turner, R. & Paton, A. The World Checklist of Vascular Plants, a continuously updated resource for exploring global plant diversity. Scientific Data 8, 1–10 (2021).
doi: 10.1038/s41597-021-00997-6
Błażejczyk, K. Climate and bioclimate of Poland. Geographia polonica 77, 31–48 (2006).
Cervellini, M. et al. A grid-based map for the Biogeographical Regions of Europe. Biodiversity Data Journal 8 (2020).
Finnie, T. J., Preston, C. D., Hill, M. O., Uotila, P. & Crawley, M. J. Floristic elements in European vascular plants: an analysis based on Atlas Florae Europaeae. Journal of Biogeography 34, 1848–1872 (2007).
doi: 10.1111/j.1365-2699.2007.01750.x
Szubert, M. Opisanie Drzew i Krzewów Leśnych Królestwa Polskiego. (W Drukarni N. Glücksberga, 1827).
Pol, W. Dzieła Wincentego Pola: Wydanie 1 zupełne. Muzeum Natury we Lwowie (Biblioteka Narodowego Zakładu imienia Ossolińskich, 1847).
Połujański, A. Opisanie lasów Królestwa Polskiego i Guberni Zachodnich Cesarstwa Rosyjskiego pod Względem Historycznym, Statystycznym i Gospodarczym: Tomy 1. (W Drukarni Gazety Codziennej, 1854).
Herbich F. Pflanzengeograpische Bemerkungen über die Wälder Galiziens. Verh. Der k.k. zool-bot. Ges. In Wien. (1860).
Strzelecki, H. O Przyrodzonym Rozsiedleniu Drzew Leśnych w Galicji. (Sylwan 12. Lwów, 1894).
Raciborski, M. Rozmieszczenie oraz granice drzew oraz ważniejszych krzewów i roślin na ziemiach polskich. Geografia fizyczna ziem polskich i charakterystyka fizyczna ludności. (Akademia Umiejętności, 1912).
Dziubałtowski, S. Les associations steppiques sur le plateau de la Petite Pologne et leurs successions. Acta Societatis Botanicorum Poloniae 3(2), 164–195 (1925).
doi: 10.5586/asbp.1925.012
Szafer, W., Pawłowski, B. & Kulczyński, S. Zespoły Roślin w Tatrach. Część 1. Zespoły Roślin w Dolinie Chochołowskiej (Polska Akademia Umiejętności, Kraków, 1927).
Nowiński, M. Zespoły roślinne Puszczy Sandomierskiej. Cz. I. Zespoły roślinne torfowisk niskich pomiędzy Chodaczowem a Grodziskiem. Kosmos, ser. A 52(3-4), 457–546 (1928).
Szafer, W. Szata Roślinna Polski (Państwowe Wydawnictw Naukowe, 1955).
Szafer, W. The Vegetation of Poland: International Series of Monographs in Pure and Applied Biology: Botany 9 (Pergamon, 1966).
Zając, A. Atlas of distribution of vascular plants in Poland (ATPOL). Taxon 27, 481–484 (1978).
doi: 10.2307/1219899
Zając, A. & Zając, M. Atlas Rozmieszczenia Roślin Naczyniowych w Polsce. Nakładem Pracowni Chorologii Komputerowej Instytutu Botaniki: (Uniwersytetu Jagiellońskiego, 2001).
Zając, A. & Zając, M. Distribution Atlas of Vascular Plants in Poland: appendix. (Institute of Botany, Jagiellonian University, 2019).
Kącki, Z. & Sliwinski, M. The Polish Vegetation Database: structure, resources and development. Acta Societatis Botanicorum Poloniae 81, 75–79 (2012).
doi: 10.5586/asbp.2012.014
Szafer W., Kulczyński S. & Pawłowski, B. Rosliny polskie. (PWN, 1953).
Komsta, Ł. ATPOL geobotanical grid revisited-a proposal of coordinate conversion algorithms. Annales Universitatis Mariae Curie-Skłodowska. Sectio E, Agricultura 71, 31–37 (2016).
Verey, M. Teoretyczna analiza i praktyczne konsekwencje przyjęcia modelowej siatki ATPOL jako odwzorowania stożkowego definiującego konwersję współrzędnych płaskich na elipsoidę WGS 84. Fragmenta Floristica et Geobotanica Polonica 24, 469–488 (2017).
Braun-Blanquet, J. Pflanzensoziologie. Grundzüge der Vegetationskunde. Wien: (Springer-Verlag, 1964).
Dengler, J. et al. The Global Index of Vegetation-Plot Databases (GIVD): a new resource for vegetation science. Journal of Vegetation Science 22, 582–597 (2011).
doi: 10.1111/j.1654-1103.2011.01265.x
Chytrý, M. et al. European Vegetation Archive (EVA): an integrated database of European vegetation plots. Applied Vegetation Science 19, 173–180 (2016).
doi: 10.1111/avsc.12191
Bruelheide, H. et al. sPlot–A new tool for global vegetation analyses. Journal of Vegetation Science 30, 161–186 (2019).
doi: 10.1111/jvs.12710
Dengler, J. et al. The need for and the requirements of EuroSL, an electronic taxonomic reference list of all european plants. In Vegetation databases for the 21
Pescott, O. L., Humphrey, T. A. & Walker, K. J. A short guide to using British and Irish plant occurrence data for research. Report No. N520609CR.v.1.4 (Wallingford, NERC/Centre for Ecology & Hydrology, 2018).
Tokarska-Guzik, B. et al. Rośliny obcego pochodzenia w Polsce. Warszawa: (Generalna Dyrekcja Ochrony Środowiska 2012).
Kaźmierczakowa, R. et al. Polska Czerwona Lista Paprotników i Roślin Kwiatowych. Krakow: (Institute of Nature Conservation, Polish Academy of Sciences 2016).
Szymura, T. et al. Vascular plant species richness in Poland version 1.1, Zenodo, https://doi.org/10.5281/zenodo.8150757 (2023).
Kühn, I., Brandl, R., May, R. & Klotz, S. Plant distribution patterns in Germany–Will aliens match natives? Feddes Repertorium, 114, 393-645 (2003).
Hill, M. O. Local frequency as a key to interpreting species occurrence data when recording effort is not known. Methods in Ecology and Evolution 3, 195–205 (2012).
doi: 10.1111/j.2041-210X.2011.00146.x
Maes, D. & van Swaay, C. A. A new methodology for compiling national Red Lists applied to butterflies (Lepidoptera, Rhopalocera) in Flanders (N-Belgium) and the Netherlands. Journal of Insect Conservation 1, 113–124 (1997).
doi: 10.1023/A:1018491228082
Tessarolo, G., Ladle, R. J., Lobo, J. M., Rangel, T. F. & Hortal, J. Using maps of biogeographical ignorance to reveal the uncertainty in distributional data hidden in species distribution models. Ecography 44, 1743–1755 (2021).
doi: 10.1111/ecog.05793

Auteurs

Tomasz H Szymura (TH)

Botanical Garden, University of Wrocław, ul. Sienkiewicza 23, 50-335, Wrocław, Poland. tomasz.szymura@uwr.edu.pl.

Henok Kassa (H)

Department of Ecology, Biogeochemistry and Environmental Protection, University of Wrocław, Kanonia 6/8, 50-328, Wrocław, Poland.

Grzegorz Swacha (G)

Botanical Garden, University of Wrocław, ul. Sienkiewicza 23, 50-335, Wrocław, Poland.

Magdalena Szymura (M)

Institute of Agroecology and Plant Production, Wrocław University of Environmental and Life Sciences, Grunwaldzki Sq. 24A, 50-363, Wrocław, Poland.

Adam Zając (A)

Institute of Botany, Faculty of Biology and Earth Sciences, Jagiellonian University in Kraków, Kopernika 27, 31-501, Kraków, Poland.

Zygmunt Kącki (Z)

Botanical Garden, University of Wrocław, ul. Sienkiewicza 23, 50-335, Wrocław, Poland.

Articles similaires

Humans Recurrence Male Female Middle Aged

Real world data on cervical cancer treatment patterns, healthcare access and resource utilization in the Brazilian public healthcare system.

Thabata Martins Ferreira Campuzano, Maria Amelia Carlos Souto Maior Borba, Paula de Mendonça Batista et al.
1.00
Humans Female Uterine Cervical Neoplasms Brazil Middle Aged
Seeds Nitrogen Mustard Plant Fertilizers Plant Oils

Classifications MeSH