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环境协变量层次控制土壤细菌丰富度的全球生物地理学。

A hierarchy of environmental covariates control the global biogeography of soil bacterial richness.

机构信息

Soil, Terrestrial and Environmental Physics (STEP), Institute of Biogeochemistry and Pollutant dynamics (IBP), Swiss Federal Institute of Technology (ETH), 8092, Zürich, Switzerland.

出版信息

Sci Rep. 2019 Aug 20;9(1):12129. doi: 10.1038/s41598-019-48571-w.

Abstract

Soil bacterial communities are central to ecosystem functioning and services, yet spatial variations in their composition and diversity across biomes and climatic regions remain largely unknown. We employ multivariate general additive modeling of recent global soil bacterial datasets to elucidate dependencies of bacterial richness on key soil and climatic attributes. Although results support the well-known association between bacterial richness and soil pH, a hierarchy of novel covariates offers surprising new insights. Defining climatic soil water content explains both, the extent and connectivity of aqueous micro-habitats for bacterial diversity and soil pH, thus providing a better causal attribution. Results show that globally rare and abundant soil bacterial phylotypes exhibit different levels of dependency on environmental attributes. Surprisingly, the strong sensitivity of rare bacteria to certain environmental conditions improves their predictability relative to more abundant phylotypes that are often indifferent to variations in environmental drivers.

摘要

土壤细菌群落是生态系统功能和服务的核心,但它们在生物群落和气候区域的组成和多样性的空间变化在很大程度上仍然未知。我们利用最近的全球土壤细菌数据集的多元广义加性建模来阐明细菌丰富度与关键土壤和气候属性的依赖关系。尽管结果支持了细菌丰富度与土壤 pH 值之间的众所周知的关联,但一系列新的协变量提供了令人惊讶的新见解。定义气候土壤水分含量可以解释细菌多样性和土壤 pH 值的水相微生境的范围和连通性,从而提供更好的因果归因。结果表明,全球范围内稀有和丰富的土壤细菌类群表现出对环境属性不同程度的依赖性。令人惊讶的是,稀有细菌对某些环境条件的强烈敏感性提高了它们的可预测性,而丰富的类群往往对环境驱动因素的变化漠不关心。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8484/6702155/6aa2bf82dc7f/41598_2019_48571_Fig1_HTML.jpg

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