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迈向土壤生命的进化生态学

Towards an evolutionary ecology of life in soil.

作者信息

Crawford John W, Harris James A, Ritz Karl, Young Iain M

机构信息

SIMBIOS Center, University of Abertay Dundee, Bell Street, Dundee, UK, DD1 1HG.

出版信息

Trends Ecol Evol. 2005 Feb;20(2):81-7. doi: 10.1016/j.tree.2004.11.014. Epub 2004 Dec 15.

Abstract

The soil-microbe system is one of the most diverse components of the terrestrial ecosystem. The origin of this diversity, and its relation to the life-sustaining processes that are mediated by the resident microbial community, is still poorly understood. The inherent complexities necessitate a theoretical framework that integrates ecological and evolutionary approaches and which embraces the physical heterogeneity of the soil environment. Such a framework is currently lacking, although recent advances in theory and experimentation are beginning to identify the essential ingredients. Here, we review and evaluate the relevance of current modelling approaches, and propose a new synthesis of an evolutionary ecology of life in soil. Key elements include an account of dispersal, horizontal gene transfer, and the consideration of the physical and biological components of soil as an integrated complex adaptive system.

摘要

土壤-微生物系统是陆地生态系统中最多样化的组成部分之一。这种多样性的起源及其与由常驻微生物群落介导的维持生命过程的关系,目前仍知之甚少。其内在的复杂性需要一个整合生态和进化方法并包含土壤环境物理异质性的理论框架。尽管理论和实验方面的最新进展已开始确定基本要素,但目前仍缺乏这样一个框架。在此,我们回顾并评估当前建模方法的相关性,并提出一种土壤中生命进化生态学的新综合观点。关键要素包括对扩散、水平基因转移的描述,以及将土壤的物理和生物成分视为一个综合复杂适应系统的考量。

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