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Comparative Genomics of Serratia spp.: Two Paths towards Endosymbiotic Life

机译:朝内共生生活沙雷菌属:两个路径的比较基因组学

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摘要

Symbiosis is a widespread phenomenon in nature, in which insects show a great number of these associations. Buchnera aphidicola, the obligate endosymbiont of aphids, coexists in some species with another intracellular bacterium, Serratia symbiotica. Of particular interest is the case of the cedar aphid Cinara cedri, where B. aphidicola BCc and S. symbiotica SCc need each other to fulfil their symbiotic role with the insect. Moreover, various features seem to indicate that S. symbiotica SCc is closer to an obligate endosymbiont than to other facultative S. symbiotica, such as the one described for the aphid Acirthosyphon pisum (S. symbiotica SAp). This work is based on the comparative genomics of five strains of Serratia, three free-living and two endosymbiotic ones (one facultative and one obligate) which should allow us to dissect the genome reduction taking place in the adaptive process to an intracellular life-style. Using a pan-genome approach, we have identified shared and strain-specific genes from both endosymbiotic strains and gained insight into the different genetic reduction both S. symbiotica have undergone. We have identified both retained and reduced functional categories in S. symbiotica compared to the Free-Living Serratia (FLS) that seem to be related with its endosymbiotic role in their specific host-symbiont systems. By means of a phylogenomic reconstruction we have solved the position of both endosymbionts with confidence, established the probable insect-pathogen origin of the symbiotic clade as well as the high amino-acid substitution rate in S. symbiotica SCc. Finally, we were able to quantify the minimal number of rearrangements suffered in the endosymbiotic lineages and reconstruct a minimal rearrangement phylogeny. All these findings provide important evidence for the existence of at least two distinctive S. symbiotica lineages that are characterized by different rearrangements, gene content, genome size and branch lengths.
机译:共生是自然界中普遍存在的现象,其中昆虫表现出许多这种关联。蚜虫专性的内生细菌蚜虫Buchnera aphidicola与另一种细胞内细菌Serratia symbiotica共存。雪松蚜虫Cinara cedri尤其令人关注,其中蚜虫双歧杆菌BCc和共生链球菌SCc彼此需要履行与昆虫的共生作用。此外,各种特征似乎表明共生链球菌SCc比其他兼性共生链球菌更接近专性内共生体,例如针对蚜虫蚜虫蚜虫(S. symbiotica SAp)描述的一种。这项工作基于五个沙雷氏菌,三个自由生存和两个共生共生的一个菌株(一个兼性和一个专性)的比较基因组学,这应该使我们能够剖析适应性过程中发生的基因组减少,从而适应细胞内的生活方式。使用泛基因组方法,我们从这两种共生共生菌株中鉴定出共享的和菌株特异性的基因,并深入了解了共生链球菌所经历的不同遗传还原。与自由生存的沙雷氏菌(FLS)相比,我们已经确定了共生链球菌的保留和减少的功能类别,这似乎与其内生共生体在其特定宿主共生体系统中的作用有关。通过种系重建,我们有把握地解决了两个共生共生体的位置,确定了共生进化枝的可能的病原体起源以及共生链球菌SCc中的高氨基酸取代率。最后,我们能够量化共生共生谱系中遭受的最小重排数目,并重建最小的重排系统发育史。所有这些发现为存在至少两个独特的共生链球菌谱系提供了重要证据,这些谱系以不同的重排,基因含量,基因组大小和分支长度为特征。

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