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两个宿主进化枝,两种细菌武器库:兼性内共生体通过基因丢失实现的进化

Two host clades, two bacterial arsenals: evolution through gene losses in facultative endosymbionts.

作者信息

Rollat-Farnier Pierre-Antoine, Santos-Garcia Diego, Rao Qiong, Sagot Marie-France, Silva Francisco J, Henri Hélène, Zchori-Fein Einat, Latorre Amparo, Moya Andrés, Barbe Valérie, Liu Shu-Sheng, Wang Xiao-Wei, Vavre Fabrice, Mouton Laurence

机构信息

Laboratoire de Biométrie et Biologie Evolutive, UMR CNRS 5558, Université de Lyon, Université Lyon1, Villeurbanne, France BAMBOO Research Team, INRIA Grenoble, Rhône-Alpes, France.

Institut Cavanilles de Biodiversitat i Biologia Evolutiva, Universitat de València, Spain.

出版信息

Genome Biol Evol. 2015 Feb 20;7(3):839-55. doi: 10.1093/gbe/evv030.

Abstract

Bacterial endosymbiosis is an important evolutionary process in insects, which can harbor both obligate and facultative symbionts. The evolution of these symbionts is driven by evolutionary convergence, and they exhibit among the tiniest genomes in prokaryotes. The large host spectrum of facultative symbionts and the high diversity of strategies they use to infect new hosts probably impact the evolution of their genome and explain why they undergo less severe genomic erosion than obligate symbionts. Candidatus Hamiltonella defensa is suitable for the investigation of the genomic evolution of facultative symbionts because the bacteria are engaged in specific relationships in two clades of insects. In aphids, H. defensa is found in several species with an intermediate prevalence and confers protection against parasitoids. In whiteflies, H. defensa is almost fixed in some species of Bemisia tabaci, which suggests an important role of and a transition toward obligate symbiosis. In this study, comparisons of the genome of H. defensa present in two B. tabaci species (Middle East Asia Minor 1 and Mediterranean) and in the aphid Acyrthosiphon pisum revealed that they belong to two distinct clades and underwent specific gene losses. In aphids, it contains highly virulent factors that could allow protection and horizontal transfers. In whiteflies, the genome lost these factors and seems to have a limited ability to acquire genes. However it contains genes that could be involved in the production of essential nutrients, which is consistent with a primordial role for this symbiont. In conclusion, although both lineages of H. defensa have mutualistic interactions with their hosts, their genomes follow distinct evolutionary trajectories that reflect their phenotype and could have important consequences on their evolvability.

摘要

细菌内共生是昆虫体内一个重要的进化过程,昆虫体内可容纳专性和兼性共生菌。这些共生菌的进化是由进化趋同驱动的,它们在原核生物中拥有最小的基因组。兼性共生菌广泛的宿主范围以及它们用于感染新宿主的多样策略,可能影响其基因组的进化,并解释了为什么它们经历的基因组侵蚀比专性共生菌要轻。“暂定汉密尔顿氏菌”(Candidatus Hamiltonella defensa)适合用于研究兼性共生菌的基因组进化,因为这种细菌在两类昆虫中存在特定关系。在蚜虫中,多个物种中都能发现“暂定汉密尔顿氏菌”,其流行程度中等,并能提供针对寄生蜂的保护。在粉虱中,“暂定汉密尔顿氏菌”在烟粉虱的一些物种中几乎是固定存在的,这表明其向专性共生的转变及重要作用。在本研究中,对存在于两种烟粉虱(中东 - 小亚细亚1型和地中海型)以及豌豆蚜中的“暂定汉密尔顿氏菌”基因组进行比较,发现它们属于两个不同的进化枝,并且经历了特定的基因丢失。在蚜虫中,它含有高毒性因子,可实现保护作用和水平转移。在粉虱中,该基因组失去了这些因子,获取基因的能力似乎有限。然而,它含有可能参与必需营养物质产生的基因,这与其作为共生菌的原始作用一致。总之,尽管“暂定汉密尔顿氏菌”的两个谱系都与其宿主有互利共生关系,但其基因组遵循不同的进化轨迹,反映了它们的表型,可能对其进化能力产生重要影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbca/5322557/aef2e6afeb34/evv030f1p.jpg

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