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支持土壤中微生物生命多样性的生物物理过程。

Biophysical processes supporting the diversity of microbial life in soil.

作者信息

Tecon Robin, Or Dani

机构信息

Soil and Terrestrial Environmental Physics, Department of Environmental Systems Science, ETH Zürich, Universitätstrasse 16, 8092 Zürich, Switzerland.

出版信息

FEMS Microbiol Rev. 2017 Sep 1;41(5):599-623. doi: 10.1093/femsre/fux039.

Abstract

Soil, the living terrestrial skin of the Earth, plays a central role in supporting life and is home to an unimaginable diversity of microorganisms. This review explores key drivers for microbial life in soils under different climates and land-use practices at scales ranging from soil pores to landscapes. We delineate special features of soil as a microbial habitat (focusing on bacteria) and the consequences for microbial communities. This review covers recent modeling advances that link soil physical processes with microbial life (termed biophysical processes). Readers are introduced to concepts governing water organization in soil pores and associated transport properties and microbial dispersion ranges often determined by the spatial organization of a highly dynamic soil aqueous phase. The narrow hydrological windows of wetting and aqueous phase connectedness are crucial for resource distribution and longer range transport of microorganisms. Feedbacks between microbial activity and their immediate environment are responsible for emergence and stabilization of soil structure-the scaffolding for soil ecological functioning. We synthesize insights from historical and contemporary studies to provide an outlook for the challenges and opportunities for developing a quantitative ecological framework to delineate and predict the microbial component of soil functioning.

摘要

土壤,地球充满生机的陆地表皮,在维持生命方面起着核心作用,是难以想象的微生物多样性的家园。本综述探讨了在从土壤孔隙到景观的不同尺度下,不同气候和土地利用方式下土壤中微生物生命的关键驱动因素。我们阐述了土壤作为微生物栖息地(重点是细菌)的特殊特征以及对微生物群落的影响。本综述涵盖了将土壤物理过程与微生物生命联系起来的最新建模进展(称为生物物理过程)。向读者介绍了控制土壤孔隙中水的组织以及相关传输特性的概念,以及微生物扩散范围,这些通常由高度动态的土壤水相的空间组织决定。湿润和水相连通性的狭窄水文窗口对于资源分配和微生物的长距离传输至关重要。微生物活动与其直接环境之间的反馈负责土壤结构的形成和稳定——土壤生态功能的支架。我们综合了历史和当代研究的见解,为建立一个定量生态框架以描述和预测土壤功能的微生物组成所面临的挑战和机遇提供展望。

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