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短尾蚜属与蚜虫内共生菌之间的精细共物种形成:细菌基因组有助于界定蚜虫的物种及进化关系。

Fine-scale cospeciation between Brachycaudus and Buchnera aphidicola: bacterial genome helps define species and evolutionary relationships in aphids.

作者信息

Jousselin Emmanuelle, Desdevises Yves, Coeur d'acier Armelle

机构信息

INRA, UMR CBGP (INRA/IRD/Cirad/Montpellier SupAgro), Campus International de Baillarguet, CS 30016, 34988 Montferrier-sur-Lez cedex, France.

出版信息

Proc Biol Sci. 2009 Jan 7;276(1654):187-96. doi: 10.1098/rspb.2008.0679.

Abstract

Aphids harbour an obligatory symbiont, Buchnera aphidicola, providing essential amino acids not supplied by their diet. These bacteria are transmitted vertically and phylogenic analyses suggest that they have 'cospeciated' with their hosts. We investigated this cospeciation phenomenon at a fine taxonomic level, within the aphid genus Brachycaudus. We used DNA-based methods of species delimitation in both organisms, to avoid biases in the definition of aphid and Buchnera species and to infer association patterns without the presumption of a specific interaction. Our results call into question certain 'taxonomic' species of Brachycaudus and suggest that B. aphidicola has diversified into independently evolving entities, each specific to a 'phylogenetic' Brachycaudus species. We also found that Buchnera and their hosts simultaneously diversified, in parallel. These results validate the use of Buchnera DNA data for inferring the evolutionary history of their host. The Buchnera genome evolves rapidly, making it the perfect tool for resolving ambiguities in aphid taxonomy. This study also highlights the usefulness of species delimitation methods in cospeciation studies involving species difficult to conceptualize--as is the case for bacteria--and in cases in which the taxonomy of the interacting organisms has not been determined independently and species definition depends on host association.

摘要

蚜虫体内携带着一种专性共生菌——蚜虫内共生菌(Buchnera aphidicola),它能提供蚜虫食物中所没有的必需氨基酸。这些细菌通过垂直传播,系统发育分析表明它们与宿主“共同物种形成”。我们在短尾蚜属(Brachycaudus)蚜虫的精细分类水平上研究了这种共同物种形成现象。我们在这两种生物中都使用基于DNA的物种界定方法,以避免在蚜虫和蚜虫内共生菌物种定义上的偏差,并在不假定特定相互作用的情况下推断关联模式。我们的结果对短尾蚜属的某些“分类学”物种提出了质疑,并表明蚜虫内共生菌已分化为独立进化的实体,每个实体都特定于一个“系统发育”的短尾蚜属物种。我们还发现蚜虫内共生菌及其宿主同时平行分化。这些结果验证了利用蚜虫内共生菌的DNA数据来推断其宿主进化历史的方法。蚜虫内共生菌的基因组进化迅速,使其成为解决蚜虫分类学中模糊问题的理想工具。这项研究还强调了物种界定方法在涉及难以概念化的物种(如细菌)的共同物种形成研究中的有用性,以及在相互作用生物的分类尚未独立确定且物种定义取决于宿主关联的情况下的有用性。

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