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一种用于发现细菌多样性基本单位的系统分类学。

A systematics for discovering the fundamental units of bacterial diversity.

作者信息

Cohan Frederick M, Perry Elizabeth B

机构信息

Department of Biology, Wesleyan University, Middletown, Connecticut 06459-0170, USA.

出版信息

Curr Biol. 2007 May 15;17(10):R373-86. doi: 10.1016/j.cub.2007.03.032.

Abstract

Bacterial systematists face unique challenges when trying to identify ecologically meaningful units of biological diversity. Whereas plant and animal systematists are guided by a theory-based concept of species, microbiologists have yet to agree upon a set of ecological and evolutionary properties that will serve to define a bacterial species. Advances in molecular techniques have given us a glimpse of the tremendous diversity present within the microbial world, but significant work remains to be done in order to understand the ecological and evolutionary dynamics that can account for the origin, maintenance, and distribution of that diversity. We have developed a conceptual framework that uses ecological and evolutionary theory to identify the DNA sequence clusters most likely corresponding to the fundamental units of bacterial diversity. Taking into account diverse models of bacterial evolution, we argue that bacterial systematics should seek to identify ecologically distinct groups with evidence of a history of coexistence, as based on interpretation of sequence clusters. This would establish a theory-based species unit that holds the dynamic properties broadly attributed to species outside of microbiology.

摘要

在试图识别具有生态意义的生物多样性单位时,细菌分类学家面临着独特的挑战。植物和动物分类学家以基于理论的物种概念为指导,而微生物学家尚未就一套用于定义细菌物种的生态和进化特性达成共识。分子技术的进步让我们得以一窥微生物世界中存在的巨大多样性,但要理解能够解释这种多样性的起源、维持和分布的生态和进化动态,仍有大量工作要做。我们已经开发出一个概念框架,利用生态和进化理论来识别最有可能对应于细菌多样性基本单位的DNA序列簇。考虑到细菌进化的多种模型,我们认为细菌分类学应基于对序列簇的解读,寻求识别出具有共存历史证据的生态上不同的群体。这将建立一个基于理论的物种单位,该单位具有广泛归因于微生物学之外物种的动态特性。

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