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物种生态位的规律揭示了世界气候区域。

Regularities in species' niches reveal the world's climate regions.

作者信息

Calatayud Joaquín, Neuman Magnus, Rojas Alexis, Eriksson Anton, Rosvall Martin

机构信息

Integrated Science Lab, Department of Physics, Umeå University, Umeå, Sweden.

Departamento de Biología, Geología, Física y Química inorgánica, Universidad Rey Juan Carlos, Madrid, Spain.

出版信息

Elife. 2021 Feb 8;10:e58397. doi: 10.7554/eLife.58397.

Abstract

Climate regions form the basis of many ecological, evolutionary, and conservation studies. However, our understanding of climate regions is limited to how they shape vegetation: they do not account for the distribution of animals. Here, we develop a network-based framework to identify important climates worldwide based on regularities in realized niches of about 26,000 tetrapods. We show that high-energy climates, including deserts, tropical savannas, and steppes, are consistent across animal- and plant-derived classifications, indicating similar underlying climatic determinants. Conversely, temperate climates differ across all groups, suggesting that these climates allow for idiosyncratic adaptations. Finally, we show how the integration of niche classifications with geographical information enables the detection of climatic transition zones and the signal of geographic and historical processes. Our results identify the climates shaping the distribution of tetrapods and call for caution when using general climate classifications to study the ecology, evolution, or conservation of specific taxa.

摘要

气候区域构成了许多生态、进化和保护研究的基础。然而,我们对气候区域的理解仅限于它们如何塑造植被:它们并未考虑动物的分布情况。在此,我们基于约26000种四足动物实际生态位的规律,开发了一个基于网络的框架来识别全球重要气候区。我们发现,包括沙漠、热带稀树草原和草原在内的高能气候区在基于动物和植物得出的分类中是一致的,这表明存在相似的潜在气候决定因素。相反,温带气候区在所有类别中存在差异,这表明这些气候允许有独特的适应性。最后,我们展示了生态位分类与地理信息的整合如何能够检测气候过渡带以及地理和历史过程的信号。我们的研究结果确定了塑造四足动物分布的气候,并呼吁在使用一般气候分类来研究特定分类群的生态、进化或保护时要谨慎。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a616/7963475/64656e8ad667/elife-58397-fig1.jpg

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