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冰上岛屿:生境变化对南极生物多样性的潜在影响。

Islands in the ice: Potential impacts of habitat transformation on Antarctic biodiversity.

机构信息

British Antarctic Survey, NERC, Cambridge, UK.

Securing Antarctica's Environmental Future, School of Biology and Environmental Science, Queensland University of Technology, Brisbane, QLD, Australia.

出版信息

Glob Chang Biol. 2022 Oct;28(20):5865-5880. doi: 10.1111/gcb.16331. Epub 2022 Jul 24.

Abstract

Antarctic biodiversity faces an unknown future with a changing climate. Most terrestrial biota is restricted to limited patches of ice-free land in a sea of ice, where they are adapted to the continent's extreme cold and wind and exploit microhabitats of suitable conditions. As temperatures rise, ice-free areas are predicted to expand, more rapidly in some areas than others. There is high uncertainty as to how species' distributions, physiology, abundance, and survivorship will be affected as their habitats transform. Here we use current knowledge to propose hypotheses that ice-free area expansion (i) will increase habitat availability, though the quality of habitat will vary; (ii) will increase structural connectivity, although not necessarily increase opportunities for species establishment; (iii) combined with milder climates will increase likelihood of non-native species establishment, but may also lengthen activity windows for all species; and (iv) will benefit some species and not others, possibly resulting in increased homogeneity of biodiversity. We anticipate considerable spatial, temporal, and taxonomic variation in species responses, and a heightened need for interdisciplinary research to understand the factors associated with ecosystem resilience under future scenarios. Such research will help identify at-risk species or vulnerable localities and is crucial for informing environmental management and policymaking into the future.

摘要

随着气候变化,南极生物多样性正面临着未知的未来。大多数陆地生物群都局限于冰海中有限的无冰斑块上,它们适应了大陆的极端寒冷和大风,并利用了适宜条件的微生境。随着温度的升高,无冰区预计将扩大,在某些地区比其他地区的速度更快。对于物种的分布、生理机能、丰度和存活率如何受到其栖息地变化的影响,存在高度的不确定性。在这里,我们利用现有的知识提出假设,即无冰区的扩张 (i) 将增加栖息地的可利用性,尽管栖息地的质量会有所不同;(ii) 将增加结构连接性,尽管不一定会增加物种建立的机会;(iii) 与温和的气候相结合,将增加非本地物种建立的可能性,但也可能延长所有物种的活动窗口;(iv) 将使某些物种受益而不是其他物种,可能导致生物多样性的同质性增加。我们预计物种反应会有相当大的空间、时间和分类学上的差异,需要加强跨学科研究,以了解未来情景下与生态系统恢复力相关的因素。这种研究将有助于确定处于危险中的物种或脆弱的地点,对于未来的环境管理和决策制定至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbbf/9542894/7d889108253d/GCB-28-5865-g001.jpg

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