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Title:What does the future hold? : habitat suitability and conservation implications for rare and widespread plant species under climate change
Authors:ID Lopes, Sara M. Brito (Author)
ID Castro, Sílvia (Author)
ID Loureiro, João (Author)
ID Glasnović, Peter (Author)
ID Surina, Boštjan (Author)
ID Castro, Mariana (Author)
Files:.pdf RAZ_Lopes_Sara_M._Brito_2026.pdf (3,92 MB)
MD5: 326C253A7611935A29290E9A06F9804B
 
URL https://onlinelibrary.wiley.com/doi/10.1111/ddi.70252
 
Language:English
Work type:Article
Typology:1.01 - Original Scientific Article
Organization:FAMNIT - Faculty of Mathematics, Science and Information Technologies
Abstract:Aim Evaluate how future environmental conditions may reshape plant distributions to identify conservation priorities in a rapidly changing environment, thereby informing effective conservation planning and mitigating the consequences of plant decline for biodiversity, species interactions and ecosystem functioning. Location Europe, with particular emphasis on the Iberian Peninsula. Methods We modelled short-term suitable habitats for rare plant species and their widespread congeners under future climate change scenarios (2041–2060). We used species distribution modelling (SDM) to project future habitat suitability for 22 pairs of congeneric species from 17 plant families, under two climate scenarios, evaluating the overall responses of rare versus widespread taxa. Using SDM, we estimated the future suitable area for each taxon by assessing potential habitat loss, habitat expansion into new areas and stable habitat, as well as the loss of currently occupied areas projected to become environmentally unsuitable under future climate scenarios. Results Our findings show that rare species are expected to lose more suitable habitat than they gain and to experience greater overall habitat loss than their widespread counterparts. However, responses varied among congeneric species pairs: 41% of rare species were projected to expand their suitable habitat, while 36% of widespread species were projected to undergo habitat contraction. Main Conclusions This study provides a practical tool to support proactive conservation planning, including the identification of priority areas for protection, population monitoring, and assisted colonisation. It also shows that currently widespread species may become vulnerable in the near future, reinforcing the need for dynamic, forward-looking conservation strategies in which SDM projections are interpreted alongside evidence on species' reproductive biology, dispersal capacity and genetic diversity.
Keywords:species distribution modelling, climate change, plant conservation
Publication version:Author Accepted Manuscript
Publication date:02.09.2026
Year of publishing:2026
Number of pages:str. 1-13
Numbering:ǂVol.ǂ, iss.
PID:20.500.12556/RUP-23560 This link opens in a new window
UDC:574.1
ISSN on article:1472-4642
DOI:10.1111/ddi.70252 This link opens in a new window
COBISS.SI-ID:289725187 This link opens in a new window
Publication date in RUP:02.09.2026
Views:52
Downloads:2
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Record is a part of a journal

Title:Diversity and distributions
Shortened title:Divers. distrib.
Publisher:Blackwell Science.
ISSN:1472-4642
COBISS.SI-ID:580085 This link opens in a new window

Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.

Secondary language

Language:Slovenian
Title:What Does the Future Hold? Habitat Suitability and Conservation Implications for Rare and Widespread Plant Species Under Climate Change
Abstract:Cilj: Oceniti, kako lahko prihodnje okoljske razmere preoblikujejo razširjenost rastlinskih vrst, da bi opredelili prednostne naloge na področju ohranjanja narave v hitro spreminjajočem se okolju ter tako prispevali k učinkovitemu načrtovanju ohranjanja in ublažili posledice upadanja rastlinskih vrst za biotsko raznovrstnost, interakcije med vrstami in delovanje ekosistemov. Lokacija: Evropa, s posebnim poudarkom na Iberskem polotoku. Metode: Modelirali smo kratkoročne spremembe primernosti habitatov za redke rastlinske vrste in njihove razširjene sorodnike v okviru scenarijev prihodnjih podnebnih sprememb (2041–2060). Z modeliranjem razširjenosti vrst (SDM) smo napovedali prihodnjo primernost habitatov za 22 parov sorodnih vrst iz 17 rastlinskih družin v okviru dveh podnebnih scenarijev ter ocenili splošne odzive redkih v primerjavi z razširjenimi taksoni. Za vsak takson smo ocenili prihodnje območje primernega habitata ter potencialno izgubo habitata, širitev na nova območja in območja stabilnega habitata. Ocenili smo tudi izgubo trenutno zasedenih območij, za katera se predvideva, da bodo v prihodnjih podnebnih scenarijih postala okoljsko neprimerna. Rezultati: Naše ugotovitve kažejo, da naj bi redke vrste izgubile več primernega habitata, kot ga bodo pridobile, in da bodo doživele večjo skupno izgubo habitata kot njihovi razširjeni sorodniki. Vendar so se odzivi med pari sorodnih vrst razlikovali: 41 % redkih vrst naj bi razširilo območje primernega habitata, medtem ko naj bi se pri 36 % razširjenih vrst to območje zmanjšalo. Glavni sklepi: Ta študija ponuja praktično orodje za podporo proaktivnemu načrtovanju ohranjanja narave, vključno z opredelitvijo prednostnih območij za varstvo, spremljanjem populacij in podporo kolonizaciji novih območij. Prav tako kaže, da bi lahko trenutno razširjene vrste v bližnji prihodnosti postale ranljive, kar poudarja potrebo po dinamičnih, v prihodnost usmerjenih strategijah ohranjanja, pri katerih se projekcije SDM razlagajo skupaj z dokazi o reproduktivni biologiji vrst, njihovi sposobnosti širjenja in genski raznovrstnosti.
Keywords:modeliranje razširjenosti vrst, podnebne spremembe, ohranjanje rastlin


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