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过去百万年来现代鸟类物种功能多样性的变化。

Changes in the functional diversity of modern bird species over the last million years.

机构信息

Center for Macroecology, Evolution, and Climate, Globe Institute, University of Copenhagen, Copenhagen 2100, Denmark.

Villum Centre for Biodiversity Genomics, Section for Ecology and Evolution, Department of Biology, University of Copenhagen, Copenhagen 2100, Denmark.

出版信息

Proc Natl Acad Sci U S A. 2023 Feb 14;120(7):e2201945119. doi: 10.1073/pnas.2201945119. Epub 2023 Feb 6.

Abstract

Despite evidence of declining biosphere integrity, we currently lack understanding of how the functional diversity associated with changes in abundance among ecological communities has varied over time and before widespread human disturbances. We combine morphological, ecological, and life-history trait data for >260 extant bird species with genomic-based estimates of changing effective population size () to quantify demographic-based shifts in avian functional diversity over the past million years and under pre-anthropogenic climate warming. We show that functional diversity was relatively stable over this period, but underwent significant changes in some key areas of trait space due to changing species abundances. Our results suggest that patterns of population decline over the Pleistocene have been concentrated in particular regions of trait space associated with extreme reproductive strategies and low dispersal ability, consistent with an overall erosion of functional diversity. Further, species most sensitive to climate warming occupied a relatively narrow region of functional space, indicating that the largest potential population increases and decreases under climate change will occur among species with relatively similar trait sets. Overall, our results identify fluctuations in functional space of extant species over evolutionary timescales and represent the demographic-based vulnerability of different regions of functional space among these taxa. The integration of paleodemographic dynamics with functional trait data enhances our ability to quantify losses of biosphere integrity before anthropogenic disturbances and attribute contemporary biodiversity loss to different drivers over time.

摘要

尽管生物多样性完整性呈下降趋势,但我们目前仍不了解与生态群落丰度变化相关的功能多样性是如何随时间和在人类广泛干扰之前发生变化的。我们结合了>260 种现存鸟类的形态学、生态学和生活史特征数据以及基于基因组的有效种群大小()变化估计值,来量化过去百万年来以及在人为引起的气候变暖之前,鸟类功能多样性的基于人口统计学的变化。我们的研究结果表明,在这一时期,功能多样性相对稳定,但由于物种丰度的变化,在特征空间的某些关键领域发生了显著变化。我们的研究结果表明,更新世以来的种群减少模式主要集中在与极端繁殖策略和低扩散能力相关的特征空间的特定区域,这与功能多样性的整体侵蚀相一致。此外,对气候变暖最敏感的物种占据了功能空间相对较窄的区域,这表明在气候变化下,最大的潜在种群增加和减少将发生在具有相对相似特征集的物种之间。总的来说,我们的研究结果确定了现存物种在进化时间尺度上的功能空间波动,并代表了这些类群中不同功能空间区域的基于人口统计学的脆弱性。将古人口统计学动态与功能特征数据相结合,提高了我们在人为干扰之前量化生物多样性完整性损失的能力,并使我们能够根据不同时间的不同驱动因素来解释当代生物多样性的丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0775/9963860/c0d55993427e/pnas.2201945119fig01.jpg

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