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Tissue- and Population-Level Microbiome Analysis of the Wasp Spider Argiope bruennichi Identified a Novel Dominant Bacterial Symbiont

机译:黄蜂蜘蛛Argiope bruennichi的组织和种群水平微生物组分析确定了一种新型的优势细菌共生体。

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摘要

Many ecological and evolutionary processes in animals depend upon microbial symbioses. In spiders, the role of the microbiome in these processes remains mostly unknown. We compared the microbiome between populations, individuals, and tissue types of a range-expanding spider, using 16S rRNA gene sequencing. Our study is one of the first to go beyond targeting known endosymbionts in spiders and characterizes the total microbiome across different body compartments (leg, prosoma, hemolymph, book lungs, ovaries, silk glands, midgut, and fecal pellets). Overall, the microbiome differed significantly between populations and individuals, but not between tissue types. The microbiome of the wasp spider features a novel dominant bacterial symbiont, which is abundant in every tissue type in spiders from geographically distinct populations and that is also present in offspring. The novel symbiont is affiliated with the Tenericutes, but has low sequence identity (<85%) to all previously named taxa, suggesting that the novel symbiont represents a new bacterial clade. Its presence in offspring implies that it is vertically transmitted. Our results shed light on the processes that shape microbiome differentiation in this species and raise several questions about the implications of the novel dominant bacterial symbiont on the biology and evolution of its host.
机译:动物的许多生态和进化过程都取决于微生物共生。在蜘蛛中,微生物组在这些过程中的作用仍然未知。我们使用16S rRNA基因测序比较了范围扩大蜘蛛的种群,个体和组织类型之间的微生物组。我们的研究是首次针对蜘蛛中已知的共生共生体的研究之一,并表征了不同体腔(腿,前列腺,淋巴,书肺,卵巢,丝腺,中肠和粪便颗粒)中的总微生物组。总体而言,人群和个体之间的微生物组差异显着,但组织类型之间无显着差异。黄蜂蜘蛛的微生物组具有一种新颖的优势细菌共生体,这种细菌在地理上不同种群的蜘蛛的每种组织类型中都丰富,并且也存在于后代中。新型共生菌与Tenericutes相关,但与所有先前命名的类群的序列同一性较低(<85%),这表明新型共生菌代表了新的细菌进化枝。它在后代中的存在意味着它是垂直传播的。我们的结果揭示了影响该物种微生物组分化的过程,并提出了有关新型优势细菌共生体对其宿主生物学和进化的影响的若干问题。

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