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与蝽象和其他节肢动物相关的新型α变形菌内共生体。

Novel clade of alphaproteobacterial endosymbionts associated with stinkbugs and other arthropods.

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan.

出版信息

Appl Environ Microbiol. 2012 Jun;78(12):4149-56. doi: 10.1128/AEM.00673-12. Epub 2012 Apr 13.

Abstract

Here we report a novel clade of secondary endosymbionts associated with insects and other arthropods. Seed bugs of the genus Nysius (Hemiptera: Lygaeidae) harbor the primary gammaproteobacterial symbiont Schneideria nysicola within a pair of bacteriomes in the abdomen. Our survey of Nysius species for their facultative bacterial associates consistently yielded a novel type of alphaproteobacterial 16S rRNA gene sequence in addition to those of Wolbachia. Diagnostic PCR survey of 343 individuals representing 24 populations of four Nysius species revealed overall detection rates of the alphaproteobacteria at 77.6% in Nysius plebeius, 87.7% in Nysius sp. 1, 81.0% in Nysius sp. 2, and 100% in Nysius expressus. Further survey of diverse stinkbugs representing 24 families, 191 species, and 582 individuals detected the alphaproteobacteria from an additional 12 species representing six families. Molecular phylogenetic analysis showed that the alphaproteobacteria from the stinkbugs form a distinct and coherent monophyletic group in the order Rickettsiales together with several uncharacterized endosymbionts from fleas and ticks. The alphaproteobacterial symbiont clade was allied to bacterial clades such as the endosymbionts of acanthamoebae, the endosymbionts of cnidarians, and Midichloria spp., the mitochondrion-associated endosymbionts of ticks. In situ hybridization and electron microscopy identified small filamentous bacterial cells in various tissues of N. plebeius, including the bacteriome and ovary. The concentrated localization of the symbiont cells at the anterior pole of oocytes indicated its vertical transmission route through host insect generations. The designation "Candidatus Lariskella arthropodarum" is proposed for the endosymbiont clade.

摘要

我们在这里报告了一种与昆虫和其他节肢动物有关的新型次生内共生体。盲蝽科(盲蝽科)种子盲蝽属的腹部一对菌囊中携带主要的γ变形杆菌共生体 Schneideria nysicola。我们对 Nysius 物种的兼性细菌共生体进行了调查,除了 Wolbachia 之外,还始终在其 16S rRNA 基因序列中获得了一种新型的α变形杆菌。对 24 个 Nysius 物种的 343 个个体进行的诊断 PCR 调查显示,在 Nysius plebeius 中,α变形杆菌的总检测率为 77.6%,Nysius sp.1 为 87.7%,Nysius sp.2 为 81.0%,Nysius expressus 为 100%。对代表 24 科、191 种和 582 个个体的各种盲蝽的进一步调查显示,来自另外 6 科的 12 种盲蝽中也检测到了α变形杆菌。分子系统发育分析表明,盲蝽中的α变形杆菌在立克次体目中与来自跳蚤和蜱的几个未鉴定的内共生体一起形成了一个独特而连贯的单系群。α变形杆菌共生体群与变形杆菌内共生体、刺胞动物内共生体和 Midichloria spp. 等细菌群有关,这些群是蜱的线粒体相关内共生体。原位杂交和电子显微镜鉴定了 N. plebeius 各种组织中的小型丝状细菌细胞,包括菌囊和卵巢。共生体细胞在前极卵母细胞中的集中定位表明了其通过宿主昆虫世代垂直传播的途径。提议将“Candidatus Lariskella arthropodarum”指定为内共生体群。

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