首页> 外文期刊>Applied Microbiology >New Clues about the Evolutionary History of Metabolic Losses in Bacterial Endosymbionts, Provided by the Genome of Buchnera aphidicola from the Aphid Cinara tujafilina
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New Clues about the Evolutionary History of Metabolic Losses in Bacterial Endosymbionts, Provided by the Genome of Buchnera aphidicola from the Aphid Cinara tujafilina

机译:由蚜虫Cinara tujafilina的蚜虫Buchnera aphidicola基因组提供的有关细菌内共生菌代谢损失进化史的新线索

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The symbiotic association between aphids (Homoptera) and Buchnera aphidicola ( Gammaproteobacteria ) started about 100 to 200 million years ago. As a consequence of this relationship, the bacterial genome has undergone a prominent size reduction. The downsize genome process starts when the bacterium enters the host and will probably end with its extinction and replacement by another healthier bacterium or with the establishment of metabolic complementation between two or more bacteria. Nowadays, several complete genomes of Buchnera aphidicola from four different aphid species ( Acyrthosiphon pisum , Schizaphis graminum , Baizongia pistacea , and Cinara cedri ) have been fully sequenced. C. cedri belongs to the subfamily Lachninae and harbors two coprimary bacteria that fulfill the metabolic needs of the whole consortium: B. aphidicola with the smallest genome reported so far and “ Candidatus Serratia symbiotica.” In addition, Cinara tujafilina , another member of the subfamily Lachninae, closely related to C. cedri , also harbors “ Ca. Serratia symbiotica” but with a different phylogenetic status than the one from C. cedri . In this study, we present the complete genome sequence of B. aphidicola from C. tujafilina and the phylogenetic analysis and comparative genomics with the other Buchnera genomes. Furthermore, the gene repertoire of the last common ancestor has been inferred, and the evolutionary history of the metabolic losses that occurred in the different lineages has been analyzed. Although stochastic gene loss plays a role in the genome reduction process, it is also clear that metabolism, as a functional constraint, is also a powerful evolutionary force in insect endosymbionts.
机译:蚜虫(Homooptera)和蚜虫(Buchnera Aphidicola)(γ变形杆菌)之间的共生联系始于大约100至2亿年前。由于这种关系,细菌基因组已经显着减小了大小。当细菌进入宿主时,缩小基因组的过程就开始了,并可能以其灭绝并被另一种更健康的细菌替代或结束两个或多个细菌之间的代谢互补而结束。如今,已经对来自四种不同蚜虫物种的小蚜虫蚜虫的几个完整基因组进行了完整测序,该蚜虫为豌豆蚜,灰背线虫,白僵菌和Cinara cedri。 C. cedri属于Lachninae家族,拥有两个能满足整个财团代谢需要的共生细菌:迄今报道的基因组最小的蚜虫B. aphidicola和“共生沙雷氏假丝酵母”。此外,与C. cedri密切相关的Lachninae亚科的另一个成员Cinara tujafilina也有“ Ca.共生沙雷氏菌(Serratia symbiotica)”,但其系统发育状态不同于C. cedri。在这项研究中,我们介绍了来自C. tujafilina的蚜虫B. aphidicola的完整基因组序列,以及与其他Buchnera基因组的系统发育分析和比较基因组学。此外,已推断出最后一个祖先的基因库,并分析了在不同谱系中发生的代谢损失的进化史。尽管随机基因丢失在基因组减少过程中起作用,但很明显,新陈代谢作为一种功能性限制,也是昆虫内共生体中强大的进化力。

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