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首页> 外文期刊>Frontiers in Microbiology >Is It First the Egg or the Shrimp? – Diversity and Variation in Microbial Communities Colonizing Broods of the Vent Shrimp Rimicaris exoculata During Embryonic Development
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Is It First the Egg or the Shrimp? – Diversity and Variation in Microbial Communities Colonizing Broods of the Vent Shrimp Rimicaris exoculata During Embryonic Development

机译:首先是鸡蛋还是虾? –在胚胎发育过程中,定居在虾的巢中的微生物群落的多样性和变异性(italic> Rimicaris exoculata

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Rimicaris exoculata is one of the most well-known and emblematic species of endemic vent fauna. Like many other species from these ecosystems, Rimicaris shrimps host important communities of chemosynthetic bacteria living in symbiosis with their host inside the cephalothorax and gut. For many of these symbiotic partners, the mode of transmission remains to be elucidated and the starting point of the symbiotic relationship is not yet defined, but could begin with the egg. In this study, we explored the proliferation of microbial communities on R. exoculata broods through embryonic development using a combination of NGS sequencing and microscopy approaches. Variations in abundance and diversity of egg microbial communities were analyzed in broods at different developmental stages and collected from mothers at two distinct vent fields on the Mid-Atlantic Ridge (TAG and Snake Pit). We also assessed the specificity of the egg microbiome by comparing communities developing on egg surfaces with those developing on the cuticle of pleopods, which are thought to be exposed to similar environmental conditions because the brood is held under the female’s abdomen. In terms of abundance, bacterial colonization clearly increases with both egg developmental stage and the position of the egg within the brood: those closest to the exterior having a higher bacterial coverage. Bacterial biomass increase also accompanies an increase of mineral precipitations and thus clearly relates to the degree of exposure to vent fluids. In terms of diversity, most bacterial lineages were found in all samples and were also those found in the cephalothorax of adults. However, significant variation occurs in the relative abundance of these lineages, most of this variation being explained by body surface (egg vs. pleopod), vent field, and developmental stage. The occurrence of symbiont-related lineages of Epsilonbacteraeota, Gammaproteobacteria, Zetaproteobacteria , and Mollicutes provide a basis for discussion on both the acquisition of symbionts and the potential roles of these bacterial communities during egg development.
机译:Rimicaris exoculata是当地最常见的象征性通风口动物之一。像这些生态系统中的许多其他物种一样,Ricmicaris虾拥有重要的化学合成细菌群落,它们共生,宿主位于头胸部和肠道内。对于许多这样的共生伙伴,传播方式还有待阐明,共生关系的起点尚未确定,但可能始于卵。在这项研究中,我们使用NGS测序和显微镜技术相结合,通过胚胎发育探索了R. exoculata繁殖群上微生物群落的增殖。在不同发育阶段的亲鱼中分析了卵微生物群落的丰度和多样性变化,并从大西洋中部脊柱(TAG和蛇坑)的两个不同通气孔中的母亲那里收集了这些卵。我们还通过比较卵表面上发育的群落和腹足表皮上发育的群落来评估卵微生物组的特异性,这些群落被认为处于相似的环境条件下,因为育雏是在雌性腹部下进行的。就丰度而言,细菌定居显然随着卵的发育阶段和卵在育雏区内的位置而增加:最接近外部的那些具有较高的细菌覆盖率。细菌生物量的增加也伴随着矿物质沉淀的增加,因此显然与排放液的暴露程度有关。就多样性而言,在所有样本中都发现了大多数细菌谱系,在成年人的头胸部也发现了这些谱系。但是,这些谱系的相对丰度发生了显着变化,其中大部分变化是由体表(卵与腹足),通风孔和发育阶段所解释的。 Epsilonbacteraeota,Gammaproteobacteria,Zetaproteobacteria和Mollicutes与共生体相关的谱系的出现为讨论共生体的获得以及这些细菌在卵发育过程中的潜在作用提供了基础。

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