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森林结构和组成在驱动地中海地区蝙蝠分布中的作用。

The role of forest structure and composition in driving the distribution of bats in Mediterranean regions.

机构信息

School of Biological Sciences, University of Southampton, Southampton, UK.

Terrestrial Ecology Research Group, Department for Life Science Systems, School of Life Sciences, Technical University of Munich, Freising, Germany.

出版信息

Sci Rep. 2022 Feb 25;12(1):3224. doi: 10.1038/s41598-022-07229-w.

Abstract

Forests are key native habitats in temperate environments. While their structure and composition contribute to shaping local-scale community assembly, their role in driving larger-scale species distributions is understudied. We used detailed forest inventory data, an extensive dataset of occurrence records, and species distribution models integrated with a functional approach, to disentangle mechanistically how species-forest dependency processes drive the regional-scale distributions of nine forest specialist bats in a Mediterranean region in the south of Spain. The regional distribution patterns of forest bats were driven primarily by forest composition and structure rather than by climate. Bat roosting ecology was a key trait explaining the strength of the bat-forest dependency relationships. Tree roosting bats were strongly associated with mature and heterogeneous forest with large trees (diameters > 425 mm). Conversely, and contrary to what local-scale studies show, our results did not support that flight-related traits (wing loading and aspect ratio) drive species distributional patterns. Mediterranean forests are expected to be severely impacted by climate change. This study highlights the utility of disentangling species-environment relationships mechanistically and stresses the need to account for species-forest dependency relationships when assessing the vulnerability of forest specialists towards climate change.

摘要

森林是温带环境中的主要原生栖息地。虽然它们的结构和组成有助于塑造局部尺度的群落组装,但它们在驱动更大尺度物种分布方面的作用仍未得到充分研究。我们使用详细的森林清查数据、广泛的物种出现记录数据集以及整合功能方法的物种分布模型,以从机制上阐明物种-森林依赖过程如何驱动西班牙南部一个地中海地区的 9 种森林专业蝙蝠的区域尺度分布。森林蝙蝠的区域分布模式主要受森林组成和结构的驱动,而不是气候。蝙蝠的栖息生态是解释蝙蝠-森林依赖关系强度的关键特征。树栖蝙蝠与成熟且异质的大树木(直径>425 毫米)森林强烈相关。相反,与局部研究表明的相反,我们的结果并不支持与飞行相关的特征(翼载和纵横比)驱动物种分布模式。预计地中海森林将受到气候变化的严重影响。本研究强调了从机制上分离物种-环境关系的效用,并强调在评估森林专家对气候变化的脆弱性时需要考虑物种-森林依赖关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4286/8881505/2742ff3733be/41598_2022_7229_Fig1_HTML.jpg

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