首页> 美国卫生研究院文献>Genome Biology and Evolution >Reinventing the Wheel and Making It Round Again: Evolutionary Convergence in Buchnera–Serratia Symbiotic Consortia between the Distantly Related Lachninae Aphids Tuberolachnus salignus and Cinara cedri
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Reinventing the Wheel and Making It Round Again: Evolutionary Convergence in Buchnera–Serratia Symbiotic Consortia between the Distantly Related Lachninae Aphids Tuberolachnus salignus and Cinara cedri

机译:重塑车轮并使其重新圆:远缘相关的天疱疮蚜虫Stuberolachnus salignus和Cinara cedri之间的Buchnera-Serratia共生联盟的进化收敛

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摘要

Virtually all aphids (Aphididae) harbor Buchnera aphidicola as an obligate endosymbiont to compensate nutritional deficiencies arising from their phloem diet. Many species within the Lachninae subfamily seem to be consistently associated also with Serratia symbiotica. We have previously shown that both Cinara (Cinara) cedri and Cinara (Cupressobium) tujafilina (Lachninae: Eulachnini tribe) have indeed established co-obligate associations with both Buchnera and S. symbiotica. However, while Buchnera genomes of both Cinara species are similar, genome degradation differs greatly between the two S. symbiotica strains. To gain insight into the essentiality and degree of integration of S. symbiotica within the Lachninae, we sequenced the genome of both Buchnera and S. symbiotica endosymbionts from the distantly related aphid Tuberolachnus salignus (Lachninae: Tuberolachnini tribe). We found a striking level of similarity between the endosymbiotic system of this aphid and that of C. cedri. In both aphid hosts, S. symbiotica possesses a highly reduced genome and is found exclusively intracellularly inside bacteriocytes. Interestingly, T. salignus’ endosymbionts present the same tryptophan biosynthetic metabolic complementation as C. cedri’s, which is not present in C. tujafilina’s. Moreover, we corroborate the riboflavin-biosynthetic-role take-over/rescue by S. symbiotica in T. salignus, and therefore, provide further evidence for the previously proposed establishment of a secondary co-obligate endosymbiont in the common ancestor of the Lachninae aphids. Finally, we propose that the putative convergent split of the tryptophan biosynthetic role between Buchnera and S. symbiotica could be behind the establishment of S. symbiotica as an obligate intracellular symbiont and the triggering of further genome degradation.
机译:几乎所有的蚜虫(蚜虫)都将蚜虫作为专性的内共生体来弥补其韧皮部饮食引起的营养缺乏。 Lachninae亚科内的许多物种似乎也一直与共生沙雷氏菌相关。先前我们已经证明Cinara(Cinara)cedri和Cinara(Cupressobium)tujafilina(Lachninae:Eulachnini部落)确实与布赫纳(Buchnera)和共生链球菌(S. symbiotica)建立了共同专心的联系。然而,尽管两个Cinara物种的Buchnera基因组相似,但两个共生链球菌菌株之间的基因组降解却有很大差异。为了深入了解共生链霉菌在链霉菌中的必要性和整合程度,我们从远缘的蚜虫(Lachninae:Tuberolachnini tribe)测序了Buchnera和共生链霉菌内共生体的基因组。 。我们发现该蚜虫的内共生系统与 C的内共生系统具有惊人的相似性。 cedri 。在两个蚜虫宿主中, S。共生菌的基因组高度减少,仅在细菌细胞内发现。有趣的是, T。 salignus 的内共生体与 C具有相同的色氨酸生物合成代谢互补作用。 cedri C中不存在。 tujafilina 。此外,我们证实了 S对核黄素生物合成角色的接管/救援。 T中的共生菌。因此,可以为先前提出的在Lachninae蚜虫的共同祖先中建立次生共专性内共生体提供进一步的证据。最后,我们提出了 Buchnera S之间色氨酸生物合成作用的推测收敛性分裂。共生菌可能是 S建立的背后。共生菌作为专性的细胞内共生体,并引发进一步的基因组降解。

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