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气候塑造并改变了全球森林的功能生物多样性。

Climate shapes and shifts functional biodiversity in forests worldwide.

机构信息

Department of Ecology and Evolutionary Biology, University of California, Los Angeles, CA 90095;

Department of Ecology and Evolutionary Biology, University of Arizona, AZ 85721.

出版信息

Proc Natl Acad Sci U S A. 2019 Jan 8;116(2):587-592. doi: 10.1073/pnas.1813723116. Epub 2018 Dec 24.

Abstract

Much ecological research aims to explain how climate impacts biodiversity and ecosystem-level processes through functional traits that link environment with individual performance. However, the specific climatic drivers of functional diversity across space and time remain unclear due largely to limitations in the availability of paired trait and climate data. We compile and analyze a global forest dataset using a method based on abundance-weighted trait moments to assess how climate influences the shapes of whole-community trait distributions. Our approach combines abundance-weighted metrics with diverse climate factors to produce a comprehensive catalog of trait-climate relationships that differ dramatically-27% of significant results change in sign and 71% disagree on sign, significance, or both-from traditional species-weighted methods. We find that () functional diversity generally declines with increasing latitude and elevation, () temperature variability and vapor pressure are the strongest drivers of geographic shifts in functional composition and ecological strategies, and () functional composition may currently be shifting over time due to rapid climate warming. Our analysis demonstrates that climate strongly governs functional diversity and provides essential information needed to predict how biodiversity and ecosystem function will respond to climate change.

摘要

许多生态研究旨在通过将环境与个体表现联系起来的功能特征来解释气候如何影响生物多样性和生态系统水平的过程。然而,由于功能特征和气候数据的可用性有限,特定气候驱动因子在空间和时间上的功能多样性仍然不清楚。我们使用一种基于丰度加权特征矩的方法来编译和分析全球森林数据集,以评估气候如何影响整个群落特征分布的形状。我们的方法将丰度加权指标与多种气候因素相结合,生成了一个具有显著差异的特征-气候关系综合目录——27%的显著结果在符号上发生变化,71%的结果在符号、显著性或两者上均不一致,与传统的物种加权方法不同。我们发现:(1)功能多样性通常随纬度和海拔的增加而降低;(2)温度变异性和蒸气压是功能组成和生态策略地理变化的最强驱动力;(3)由于气候迅速变暖,功能组成可能正在随时间发生变化。我们的分析表明,气候强烈控制着功能多样性,并提供了预测生物多样性和生态系统功能对气候变化反应所需的重要信息。

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