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Climate Change Impacts on the Tree of Life: Changes in Phylogenetic Diversity Illustrated for Acropora Corals

机译:气候变化对生命树的影响:针对珊瑚藻的系统发育多样性变化

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摘要

The possible loss of whole branches from the tree of life is a dramatic, but under-studied, biological implication of climate change. The tree of life represents an evolutionary heritage providing both present and future benefits to humanity, often in unanticipated ways. Losses in this evolutionary (evo) life-support system represent losses in “evosystem” services, and are quantified using the phylogenetic diversity (PD) measure. High species-level biodiversity losses may or may not correspond to high PD losses. If climate change impacts are clumped on the phylogeny, then loss of deeper phylogenetic branches can mean disproportionately large PD loss for a given degree of species loss. Over time, successive species extinctions within a clade each may imply only a moderate loss of PD, until the last species within that clade goes extinct, and PD drops precipitously. Emerging methods of “phylogenetic risk analysis” address such phylogenetic tipping points by adjusting conservation priorities to better reflect risk of such worst-case losses. We have further developed and explored this approach for one of the most threatened taxonomic groups, corals. Based on a phylogenetic tree for the corals genus Acropora, we identify cases where worst-case PD losses may be avoided by designing risk-averse conservation priorities. We also propose spatial heterogeneity measures changes to assess possible changes in the geographic distribution of corals PD.
机译:生命之树可能会失去整个树枝,这是气候变化的戏剧性但未被充分研究的生物学含义。生命之树代表着一种进化的遗产,通常以意想不到的方式为人类提供现在和将来的利益。该进化(evo)生命支持系统中的损失代表“ evosystem”服务中的损失,并使用系统发育多样性(PD)量度。高物种水平的生物多样性损失可能或可能不对应高PD损失。如果气候变化对系统发育的影响不大,那么在给定的物种丧失程度下,较深的系统发育分支的丧失可能意味着不成比例的大型PD丧失。随着时间的流逝,进化枝内连续的物种灭绝可能仅意味着PD的中等损失,直到该进化枝内的最后一个物种灭绝并且PD急剧下降。新兴的“系统发育风险分析”方法通过调整保护优先级以更好地反映此类最坏情况损失的风险,从而解决了此类系统发育临界点。我们已为最受威胁的生物分类群体之一珊瑚开发并探索了这种方法。基于珊瑚属棘足类的系统发育树,我们确定了通过设计避免风险的优先保护措施可以避免最坏情况的PD损失的情况。我们还提出了空间异质性度量的变化,以评估珊瑚PD地理分布的可能变化。

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