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Vertical stratification influences global patterns of biodiversity

机译:垂直分层影响了生物多样性的全球模式

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Species distributions in terrestrial ecosystems are three-dimensional, spanning both the horizontal landscape and the vertical space provided by the physical environment. Classical hypotheses suggest that communities become more vertically stratified with increasing species richness, owing to reduced competition or finer niche subdivision. However, this assertion remains untested in the context of the broader realm of biogeography. Here, integrating traits and distribution data for amphibians globally, we show how vertical strategies interact with the physical and climatic environments to govern global patterns of species richness and community composition. Our results reveal a marked latitudinal shift in strategies of vertical habitat use, from highly arboreal assemblages in the tropics to highly fossorial assemblages in sub-tropical and temperate regions. Arboreality is strongly associated with precipitation, vegetation structure and climatic stability, whereas fossoriality is more common in dry environments with high diurnal temperature range and low vegetation structure. These analyses shed light on the importance of vertical stratification for species coexistence in species-rich regions. As certain tropical habitats become drier from climate change, the rich biological diversity that is emblematic of the tropics may transition from vertically stratified to 'flattened', with future communities living mostly on or beneath the ground.
机译:地面生态系统中的物种分布是三维,跨越水平景观和物理环境提供的垂直空间。经典假设表明,由于竞争或更精细的利基细分,社区随着种类的丰富性的增加而变得更加垂直分层。然而,在更广泛的生物地理领域的背景下,这种断言仍未存在。在这里,在全球范围内整合用于两栖动物的特质和分配数据,我们展示了垂直策略如何与物理和气候环境互动,以管理种类丰富和社区构成的全球模式。我们的结果揭示了垂直栖息地使用策略的标志延迟转变,从热带地区的高度树栖组装到亚热带和温带地区的高度富彩集中。树栖与降水,植被结构和气候稳定性有关,而含有高昼夜温度范围和低植被结构的干燥环境更为常见。这些分析了物种富裕地区种类共存垂直分层的重要性。由于某些热带栖息地从气候变化变得更干燥,因此热带象征的丰富的生物多样性可能从垂直分层转变为“扁平”,未来的社区主要在地面上或之下生活。

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