Key Laboratory of Animal Ecology and Conservation Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, People's Republic of China.
University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.
Proc Biol Sci. 2022 Aug 10;289(1980):20221074. doi: 10.1098/rspb.2022.1074.
Climate warming has imposed profound impacts on species globally. Understanding the vulnerabilities of species from different latitudinal regions to warming climates is critical for biological conservation. Using five species of lizards as a study system, we quantified physiological and life-history responses and geography range change across latitudes under climate warming. Using integrated biophysical models and hybrid species distribution models, we found: (i) thermal safety margin is larger at high latitudes and is predicted to decrease under climate warming for lizards at all latitudes; (ii) climate warming will speed up embryonic development and increase annual activity time of adult lizards, but will exacerbate water loss of adults across all latitudes; and (iii) species across latitudes are predicted to experience habitat contraction under climate warming due to different limitations-tropical and subtropical species are vulnerable due to increased extremely high temperatures, whereas temperate species are vulnerable due to both extremely high temperatures and increased water loss. This study provides a comprehensive understanding of the vulnerability of species from different latitudinal regions to climate warming in ectotherms, and also highlights the importance of integrating environmental factors, behaviour, physiology and life-history responses in predicting the risk of species to climate warming.
气候变暖已经对全球物种产生了深远的影响。了解不同纬度地区物种对变暖气候的脆弱性对于生物保护至关重要。本研究以五种蜥蜴为研究对象,量化了在气候变暖下,不同纬度物种的生理和生活史响应以及地理范围变化。利用综合生物物理模型和混合物种分布模型,我们发现:(i)高纬度地区的热安全边际较大,预计所有纬度的蜥蜴在气候变暖下会减小;(ii)气候变暖将加速蜥蜴胚胎发育并增加成年蜥蜴的年活动时间,但会加剧所有纬度蜥蜴的水分流失;(iii)由于不同的限制因素,不同纬度的物种预计会在气候变暖下经历栖息地收缩——热带和亚热带物种因极高温度的增加而脆弱,而温带物种则因极高温度和水分流失的增加而脆弱。本研究全面了解了不同纬度地区物种对变暖和的脆弱性,也强调了在预测物种对气候变暖的风险时,综合环境因素、行为、生理和生活史响应的重要性。