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微生物群落中社会相互作用的基因型观点。

The genotypic view of social interactions in microbial communities.

机构信息

Department of Zoology, University of Oxford, Oxford OX1 3PS, United Kingdom; email:

出版信息

Annu Rev Genet. 2013;47:247-73. doi: 10.1146/annurev-genet-111212-133307. Epub 2013 Aug 30.

DOI:10.1146/annurev-genet-111212-133307
PMID:24016192
Abstract

Dense and diverse microbial communities are found in many environments. Disentangling the social interactions between strains and species is central to understanding microbes and how they respond to perturbations. However, the study of social evolution in microbes tends to focus on single species. Here, we broaden this perspective and review evolutionary and ecological theory relevant to microbial interactions across all phylogenetic scales. Despite increased complexity, we reduce the theory to a simple null model that we call the genotypic view. This states that cooperation will occur when cells are surrounded by identical genotypes at the loci that drive interactions, with genetic identity coming from recent clonal growth or horizontal gene transfer (HGT). In contrast, because cooperation is only expected to evolve between different genotypes under restrictive ecological conditions, different genotypes will typically compete. Competition between two genotypes includes mutual harm but, importantly, also many interactions that are beneficial to one of the two genotypes, such as predation. The literature offers support for the genotypic view with relatively few examples of cooperation between genotypes. However, the study of microbial interactions is still at an early stage. We outline the logic and methods that help to better evaluate our perspective and move us toward rationally engineering microbial communities to our own advantage.

摘要

在许多环境中都存在着密集而多样的微生物群落。解析菌株和物种之间的社会相互作用对于理解微生物及其对干扰的反应至关重要。然而,微生物社会进化的研究往往集中在单一物种上。在这里,我们拓宽了这一视角,回顾了与所有系统发育尺度上微生物相互作用相关的进化和生态学理论。尽管复杂性增加了,但我们将理论简化为一个简单的零假设模型,称为基因型观点。该模型指出,当驱动相互作用的基因座周围的细胞具有相同的基因型时,就会发生合作,而遗传同一性来自最近的克隆生长或水平基因转移(HGT)。相比之下,由于合作只期望在限制生态条件下在不同基因型之间进化,因此不同基因型通常会竞争。两种基因型之间的竞争包括相互伤害,但重要的是,还包括许多对两种基因型之一有益的相互作用,例如捕食。文献为基因型观点提供了支持,只有相对较少的基因型之间合作的例子。然而,微生物相互作用的研究仍处于早期阶段。我们概述了有助于更好地评估我们的观点并使我们朝着合理地设计微生物群落以造福于我们自己的逻辑和方法。

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