UMR203 BF2I, Biologie fonctionnelle insectes et interactions, Université de Lyon, INRA, INSA-Lyon, IFR41, 20, avenue A. Einstein, 69621 Villeurbanne, France.
C R Biol. 2009 Nov;332(11):1034-49. doi: 10.1016/j.crvi.2009.09.007. Epub 2009 Oct 14.
Buchnera aphidicola is the primary obligate intracellular symbiont of most aphid species. B. aphidicola and aphids have been evolving in parallel since their association started, about 150 Myr ago. Both partners have lost their autonomy, and aphid diversification has been confined to smaller ecological niches by this co-evolution. B. aphidicola has undergone major genomic and biochemical changes as a result of adapting to intracellular life. Several genomes of B. aphidicola from different aphid species have been sequenced in the last decade, making it possible to carry out analyses and comparative studies using system-level in silico methods. This review attempts to provide a systemic description of the symbiotic function of aphid endosymbionts, particularly of B. aphidicola from the pea aphid Acyrthosiphon pisum, by analyzing their structural genomic properties, as well as their genetic and metabolic networks.
豌豆蚜的共生菌 Buchnera aphidicola 是大多数蚜虫物种的主要专性细胞内共生体。自 1.5 亿年前它们开始共生以来,B. aphidicola 和蚜虫一直在平行进化。由于这种共同进化,两个伙伴都失去了自主性,蚜虫的多样化被限制在更小的生态位中。B. aphidicola 由于适应细胞内生活而经历了重大的基因组和生化变化。在过去的十年中,已经对来自不同蚜虫物种的几种 B. aphidicola 基因组进行了测序,这使得使用系统水平的计算机方法进行分析和比较研究成为可能。本综述试图通过分析其结构基因组特性以及遗传和代谢网络,对蚜虫内共生体(特别是豌豆蚜 Acyrthosiphon pisum 的 B. aphidicola)的共生功能进行系统描述。