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Serratia symbiotica from the Aphid Cinara cedri: A Missing Link from Facultative to Obligate Insect Endosymbiont

机译:蚜虫Cinara cedri的Serratia共生菌:从兼性到专性昆虫内胚轴的缺失环节

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摘要

The genome sequencing of Buchnera aphidicola BCc from the aphid Cinara cedri, which is the smallest known Buchnera genome, revealed that this bacterium had lost its symbiotic role, as it was not able to synthesize tryptophan and riboflavin. Moreover, the biosynthesis of tryptophan is shared with the endosymbiont Serratia symbiotica SCc, which coexists with B. aphidicola in this aphid. The whole-genome sequencing of S. symbiotica SCc reveals an endosymbiont in a stage of genome reduction that is closer to an obligate endosymbiont, such as B. aphidicola from Acyrthosiphon pisum, than to another S. symbiotica, which is a facultative endosymbiont in this aphid, and presents much less gene decay. The comparison between both S. symbiotica enables us to propose an evolutionary scenario of the transition from facultative to obligate endosymbiont. Metabolic inferences of B. aphidicola BCc and S. symbiotica SCc reveal that most of the functions carried out by B. aphidicola in A. pisum are now either conserved in B. aphidicola BCc or taken over by S. symbiotica. In addition, there are several cases of metabolic complementation giving functional stability to the whole consortium and evolutionary preservation of the actors involved.
机译:来自蚜虫Cinara cedri的蚜虫Buchnera aphidicola BCc的基因组测序表明,该细菌失去了共生作用,因为它无法合成色氨酸和核黄素。此外,色氨酸的生物合成与共生内生共生菌Serratia symbiotica SCc共享,后者在该蚜虫中与蚜虫双歧杆菌共存。共生链球菌SCc的全基因组测序揭示了一个共生共生体在基因组减少的阶段比一个专性内共生体,例如来自Acyrthosiphon pisum的蚜虫B. aphidicola,而不是另一个共生共生链球菌,这是兼性内共生体。蚜虫,且基因衰变少得多。两种共生链球菌之间的比较使我们能够提出从兼性向专性内共生转变的进化方案。蚜虫双歧杆菌BCc和共生链球菌SCc的代谢推论表明,蚜虫双歧杆菌在pi。pisum中执行的大部分功能现在都在蚜虫双歧杆菌BCc中保守或由共生链球菌接管。另外,有几种新陈代谢互补的情况使整个财团具有功能稳定性,并且所涉参与者的进化保持能力强。

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