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Forest herb species with similar European geographic ranges may respond differently to climate change

气候变化 航程(航空) 生态学 地理 生态位 物种分布 降水 生物多样性 物候学 环境科学 气候学 栖息地 生物 复合材料 材料科学 气象学 地质学
作者
Radosław Puchałka,Sonia Paź‐Dyderska,Łukasz Dylewski,Patryk Czortek,Michaela Vítková,Jiřı́ Sádlo,Marcin Klisz,Serhii Koniakin,Andraž Čarni,Valerijus Rašomavičius,Michele De Sanctis,Marcin K. Dyderski
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:905: 167303-167303 被引量:7
标识
DOI:10.1016/j.scitotenv.2023.167303
摘要

Many phenological studies have shown that spring geophytes are very sensitive to climate change, responding by shifting flowering and fruiting dates. However, there is a gap in knowledge about climatic drivers of their distributions and range shifts under climate change. Here we aimed to estimate climate niche shifts for four widely distributed and common geophytes of the nemoral zone of Europe (Anemone nemorosa, Anemone ranunculoides, Convallaria majalis and Maianthemum bifolium) and to assess the threat level under various climate change scenarios. Using MaxEnt species distribution models and future climate change scenarios we found that the precipitation of the warmest quarter was the most important factor shaping their ranges. All species studied will experience more loss in the 2061-2080 period than in 2041-2060, and under more pessimistic scenarios. M. bifolium will experience the highest loss, followed by A. nemorosa, A. ranunculoides, and the smallest for C. majalis. A. ranunculoides will gain the most, while M. bifolium will have the smallest potential range expansion. Studied species may respond differently to climate change despite similar current distributions and climatic variables affecting their potential distribution. Even slight differences in climatic niches could reduce the overlap of future ranges compared to present. We expect that due to high dependence on the warmest quarter precipitation, summer droughts in the future may be particularly severe for species that prefer moist soils. The lack of adaptation to long-distance migration and limited availability of appropriate soils may limit their migration and lead to a decline in biodiversity and changes in European forests.

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