首页> 外文期刊>Environmental microbiology >Co-evolution and symbiont replacement shaped the symbiosis between adelgids (Hemiptera: Adelgidae) and their bacterial symbionts
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Co-evolution and symbiont replacement shaped the symbiosis between adelgids (Hemiptera: Adelgidae) and their bacterial symbionts

机译:共同进化和共生体置换塑造了寄生虫(半翅目:寄生虫)与其细菌共生体之间的共生关系。

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The Adelgidae (Insecta: Hemiptera), a small group of insects, are known as severe pests on various conifers of the northern hemisphere. Despite of this, little is known about their bacteriocyte-associated endosymbionts, which are generally important for the biology and ecology of plant sap-sucking insects. Here, we investigated the adelgid species complexes Adelges laricis/tardus, Adelges abietis/viridis and Adelges cooleyi/coweni, identified based on their coI and ef1alpha genes. Each of these insect groups harboured two phylogenetically different bacteriocyte-associated symbionts belonging to the Betaproteobacteria and the Gammaproteobacteria, respectively, as inferred from phylogenetic analyses of 16S rRNA gene sequences and demonstrated by fluorescence in situ hybridization. The betaproteobacterial symbionts of all three adelgid complexes ('Candidatus Vallotia tarda', 'Candidatus Vallotia virida' and 'Candidatus Vallotia cooleyia') share a common ancestor and show a phylogeny congruent with that of their respective hosts. Similarly, there is evidence for co-evolution between the gammaproteobacterial symbionts ('Candidatus Profftia tarda', 'Candidatus Profftia virida') and A.laricis/tardus and A.abietis/viridis. In contrast, the gammaproteobacterial symbiont of A.cooleyi/coweni ('Candidatus Gillettellia cooleyia') is different from that of the other two adelgids but shows a moderate relationship to the symbiont 'Candidatus Ecksteinia adelgidicola' of A.nordmannianae/piceae. All symbionts were present in all adelgid populations and life stages analysed, suggesting vertical transmission from mother to offspring. In sharp contrast to their sister group, the aphids, adelgids do not consistently contain a single obligate (primary) symbiont but have acquired phylogenetically different bacterial symbionts during their evolution, which included multiple infections and symbiont replacement.
机译:Adelgidae(Insecta:Hemiptera)是一小类昆虫,在北半球的各种针叶树上都被称为严重害虫。尽管如此,关于它们与细菌细胞相关的共生共生体知之甚少,而这些共生共生体对于吸吮植物液的昆虫的生物学和生态学通常很重要。在这里,我们调查了基于其coI和ef1alpha基因鉴定出的Adelgid种复合物Adelges laricis / tardus,Adelges abietis / viridis和Adelges cooleyi / coweni。从16S rRNA基因序列的系统发育分析推断并通过荧光原位杂交证明,这些昆虫中的每一个都带有两个分别属于Betaproteobacteria和Gammaproteobacteria的与系统发育不同的细菌相关共生体。所有三种阿德吉德复合体(“ Candidatus Vallotia tarda”,“ Candidatus Vallotia virida”和“ Candidatus Vallotia cooleyia”)的β蛋白共生菌具有相同的祖先,并显示出与它们各自宿主一致的系统发育史。同样,有证据表明,γ-变形杆菌共生体(“ Candidatus Profftia tarda”,“ Candidatus Profftia virida”)与A.laricis / tardus和A.abietis / viridis共同进化。相比之下,嗜冷气单胞菌/ coweni('Candidatus Gillettellia cooleyia')的γ-蛋白共生菌不同于其他两个阿德吉德氏菌,但与诺德曼/拟南芥的共生菌'Candidatus Ecksteinia adelgidicola'具有适度的关系。所有共生体均存在于所有阿德吉族人群中,并进行了生命阶段分析,表明从母亲到后代的垂直传播。与它们的姊妹组形成鲜明对比的是,蚜虫,蚜虫并没有始终包含单个专性(主要)共生体,而是在进化过程中获得了系统发育上不同的细菌共生体,其中包括多种感染和共生体置换。

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