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Phylogenomics Reveals that Asaia Symbionts from Insects Underwent Convergent Genome Reduction, Preserving an Insecticide-Degrading Gene

机译:系统核科学表现揭示了来自昆虫的 Symbionts从昆虫接受会聚基因组减少,保留一种杀虫剂降解基因

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We have studied genome reduction within several strains of the insect symbiont Asaia isolated from different species/strains of mosquito and medfly. Phylogenetically distant strains of Asaia , despite following a common pattern involving the loss of genes related to genome stability, have undergone independent genome reductions, highlighting the peculiar role of specific metabolic pathways in the symbiotic relationship between Asaia and its host. ABSTRACT The mosquito microbiota is composed of several lineages of microorganisms whose ecological roles and evolutionary histories have yet to be investigated in depth. Among these microorganisms, Asaia bacteria play a prominent role, given their abundance in the gut, reproductive organs, and salivary glands of different mosquito species, while their presence has also been reported in several other insects. Notably, Asaia has great potential as a tool for the control of mosquito-borne diseases. Here, we present a wide phylogenomic analysis of Asaia strains isolated from different species of mosquito vectors and from different populations of the Mediterranean fruit fly (medfly), Ceratitis capitata , an insect pest of worldwide economic importance. We show that phylogenetically distant lineages of Asaia experienced independent genome reductions, despite following a common pattern, characterized by the early loss of genes involved in genome stability. This result highlights the role of specific metabolic pathways in the symbiotic relationship between Asaia and the insect host. Finally, we discovered that all but one of the Asaia strains included in the study possess the pyrethroid hydrolase gene. Phylogenetic analysis revealed that this gene is ancestral in Asaia , strongly suggesting that it played a role in the establishment of the symbiotic association between these bacteria and the mosquito hosts. We propose that this gene from the symbiont contributed to initial pyrethroid resistance in insects harboring Asaia , also considering the widespread production of pyrethrins by several plants.
机译:我们研究了从不同种类/蚊子和母霉的不同物种/菌株中分离的昆虫Symbiont asaia的几种菌株内降低了基因组。尽管涉及涉及与基因组稳定性相关的基因丧失的常见模式,但经历了独立的基因组减少,因此突出了特异性代谢途径在ASAIA及其宿主之间的共生关系中的特异性作用的特殊作用。摘要蚊子微生物群由几种微生物谱系组成,微生物的生态角色和进化历史尚未深入调查。在这些微生物中,鉴于他们在不同蚊虫种类的肠道,生殖器官和唾液腺和唾液腺的丰富,鉴于不同蚊子物种的含量,而他们的存在也含有突出的作用。值得注意的是,Asaia具有巨大的潜力作为控制蚊虫疾病的工具。在这里,我们展示了从不同种类的蚊子载体中分离的asaia菌株以及来自地中海果蝇(Medfly),Ceratisitis的不同种群,Ceratitis,Capitata,这是一个全球经济重要性的害虫的宽系统分析。我们表明,尽管伴随着常见的模式,但仍然经历了常见的基因组减少的常见基因组减少,其特征在于基因组稳定性的早期丧失。这一结果突出了特定代谢途径在ASAIA和昆虫宿主之间的共生关系中的作用。最后,我们发现,除了该研究中包含的ASAIA菌株之一除了拟除虫菊酯水解基因之外。系统发育分析表明,该基因是Asaia的祖先,强烈建议它在这些细菌与蚊子宿主之间的共生关联中发挥了作用。我们提出来自Symbiont的该基因有助于携带Asaia的昆虫的初始拟除虫菊酯抗性,同时也考虑了几种植物的雷则丙氨酸的广泛生品。

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