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首页> 外文期刊>BMC Microbiology >Evidence of diversity and recombination in Arsenophonus symbionts of the Bemisia tabaci species complex
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Evidence of diversity and recombination in Arsenophonus symbionts of the Bemisia tabaci species complex

机译:烟粉虱种复合体的亚砷共生物种的多样性和重组证据。

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Maternally inherited bacterial symbionts infecting arthropods have major implications on host ecology and evolution. Among them, the genus Arsenophonus is particularly characterized by a large host spectrum and a wide range of symbiotic relationships (from mutualism to parasitism), making it a good model to study the evolution of host-symbiont associations. However, few data are available on the diversity and distribution of Arsenophonus within host lineages. Here, we propose a survey on Arsenophonus diversity in whitefly species (Hemiptera), in particular the Bemisia tabaci species complex. This polyphagous insect pest is composed of genetic groups that differ in many ecological aspects. They harbor specific bacterial communities, among them several lineages of Arsenophonus, enabling a study of the evolutionary history of these bacteria at a fine host taxonomic level, in association to host geographical range and ecology. Among 152 individuals, our analysis identified 19 allelic profiles and 6 phylogenetic groups, demonstrating this bacterium's high diversity. These groups, based on Arsenophonus phylogeny, correlated with B. tabaci genetic groups with two exceptions reflecting horizontal transfers. None of three genes analyzed provided evidence of intragenic recombination, but intergenic recombination events were detected. A mutation inducing a STOP codon on one gene in a strain infecting one B. tabaci genetic group was also found. Phylogenetic analyses of the three concatenated loci revealed the existence of two clades of Arsenophonus. One, composed of strains found in other Hemiptera, could be the ancestral clade in whiteflies. The other, which regroups strains found in Hymenoptera and Diptera, may have been acquired more recently by whiteflies through lateral transfers. This analysis of the genus Arsenophonus revealed a diversity within the B. tabaci species complex which resembles that reported on the larger scale of insect taxonomy. We also provide evidence for recombination events within the Arsenophonus genome and horizontal transmission of strains among insect taxa. This work provides further insight into the evolution of the Arsenophonus genome, the infection dynamics of this bacterium and its influence on its insect host's ecology.
机译:感染节肢动物的母亲遗传的细菌共生体对宿主生态和进化有重要影响。其中,Arsenophonus属的特征是宿主光谱范围广和共生关系广泛(从共生到寄生),使其成为研究宿主共生体缔合的良好模型。但是,很少有关于宿主谱系中Arsenophonus多样性和分布的数据。在这里,我们提出了一项关于粉虱种(半翅目),特别是烟粉虱(Bemisia tabaci)种复合体中的Arsenophonus多样性的调查。这种多食性害虫由许多生态方面不同的遗传群体组成。它们具有特定的细菌群落,其中包括Arsenophonus的多个谱系,从而能够在精细的宿主生物分类学水平上研究这些细菌的进化历史,并与宿主的地理范围和生态联系在一起。在152个个体中,我们的分析确定了19个等位基因谱和6个系统发育群体,证明了这种细菌的高度多样性。这些基于Arsenophonus系统发育的群体与烟粉虱的遗传群体相关,但有两个例外,反映了水平转移。分析的三个基因均未提供基因内重组的证据,但检测到基因间重组事件。还发现了在感染一个烟粉虱基因组的菌株中一个基因上诱导一个STOP密码子的突变。对三个串联位点的系统进化分析表明,存在两个Arsenophonus进化枝。其中一个由其他半翅目中发现的菌株组成,可能是粉虱的祖先进化枝。另一种是对膜翅目和双翅目中发现的菌株进行重组的方法,可能是近来粉虱通过侧向转移获得的。对Arsenophonus属的分析表明,烟粉虱种复合物中存在多样性,类似于昆虫分类学报道的更大范围。我们还提供了Arsenophonus基因组内重组事件和菌株在昆虫类群之间水平传播的证据。这项工作为Arsenophonus基因组的进化,该细菌的感染动力学及其对昆虫宿主生态的影响提供了进一步的见解。

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