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Community analysis of gut microbiota in hornets the largest eusocial wasps Vespa mandarinia and V. simillima

机译:大黄蜂最大的社会性黄蜂大黄蜂和小叶猴肠中肠道菌群的社区分析

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摘要

Gut microbiota are important for various aspects of host physiology, and its composition is generally influenced by both intrinsic and extrinsic contexts of the host. Social bee gut microbiota composition is simple and highly stable hypothesized to be due to their unique food habit and social interactions. Here, we focused on hornets, the largest of the eusocial wasps – Vespa mandarinia and V. simillima. Unlike the well-studied honey bees, adult hornets are generally herbivorous but also hunt insects for broods, a unique behavior which could influence their gut microbiota. Analysis of the gut microbiome using 16S rRNA gene sequencing revealed that the two species have simple gut microbiota, composed of seven or eight consistently maintained ‘core’ operational taxonomic units (OTUs). While the two Vespa species shared some OTUs, the structures of their gut communities differed. Phylogenetic analysis indicated association of core OTUs with host diet. Intriguingly, prey honey bee gut microbes were detected in the V. simillima gut (and to a lesser extent in V. mandarinia), suggesting migration of microorganisms from the prey gut. This is the first report uncovering gut microbiome in hornets, giving additional insight into how food habit affects gut microbiota of social insects.
机译:肠道菌群对于宿主生理的各个方面都很重要,其组成通常受宿主内在和外在环境的影响。社会蜜蜂肠道菌群的组成很简单且高度稳定,据推测是由于它们独特的饮食习惯和社会互动。在这里,我们重点研究了黄蜂,它们是最大的社会蜂类大黄蜂-Vespa mandarinia和V. simillima。与经过深入研究的蜜蜂不同,成年大黄蜂通常是草食性的,但也捕食昆虫来寻找雏鸟,这种独特的行为可能会影响它们的肠道菌群。使用16S rRNA基因测序分析肠道微生物组后发现,这两个物种具有简单的肠道菌群,由七个或八个始终保持“核心”操作分类单位(OTU)组成。尽管这两种Vespa物种共享一些OTU,但它们的肠道群落结构却有所不同。系统发育分析表明核心OTU与宿主饮食有关。有趣的是,在西氏肠球菌中检测到了猎物蜜蜂的肠道微生物(在柑桔弧菌中的检测程度较小),表明微生物从猎物肠道中迁移出来。这是第一个发现大黄蜂肠道微生物组的报告,进一步了解了食物习性如何影响社交昆虫的肠道微生物群。

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