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Patterns of Bacterial Community Composition and Diversity Following the Embryonic Development Stages of Macrobrachium rosenbergii

机译:细菌群体组成和多样性后胚胎发育阶段的大马氏体罗森伯哥

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During the evolution of aquatic animals, co-evolution between host and microbes has been overlooked. Previous studies have shown that microbes were present in the fertilized egg of fish, but compared with fish, little information is available for crustaceans. High-throughput Illumina Miseq DNA sequencing of the V3-V4 domain of the 16S rRNA gene was used to assess the microbial community composition during different stages of embryonic development in Macrobrachium rosenbergii : fertilized egg stage (OM1), cleavage stage (OM2), blastula stage (OM3), gastrula stage (OM4), egg nauplius stage (OM5), egg metanauplius stage (OM6), protozoea stage (OM7) and zoea stage (OM8). Water samples (WMZ) were also assessed. The results showed that Proteobacteria (82.92%), Bacteroidetes (9.27%), and Actinobacteria (4.49%) were the predominant phylum in the M. rosenbergii embryo. At the genus level, the microbial composition was constantly changing during embryonic development. We concluded that OM3 and OM4 might be the critical stage for transformation of the microbial composition in the M. rosenbergii embryo. The main factor responsible for microbial colonization in the embryo was primarily selective pressure exerted by the shrimp, while the microbial community in the water environment had a lower impact. This study describes bacterial communities in different stages of embryonic development in M. rosenbergii , and the effects of the surrounding environment on microbial colonization. These findings provide valuable information for further studies examining the formation of early intestinal flora in crustaceans.
机译:在水生动物的演变期间,宿主和微生物之间的共同进化被忽略了。以前的研究表明,存在于鱼类卵泡中的微生物,但与鱼相比,甲壳类动物的信息很少。 16S rRNA基因的V3-V4结构域的高通量Illumina miseq DNA测序用于评估Macrobrachium rosenbergii的不同阶段的微生物群落组合物:受精卵阶段(OM1),切割阶段(OM2),Blastula阶段(OM3),胃肠杆菌(OM4),蛋Nauplius阶段(OM5),蛋美祖,阶段(OM6),原生动物阶段(OM7)和Zoea阶段(OM8)。还评估了水样(WMZ)。结果表明,植物体外菌(82.92%),膀胱(9.27%)和肌动菌(4.49%)是M.Rosenbergii胚胎中的主要字段。在胚胎发育过程中,微生物组合物在胚胎发育过程中持续变化。我们得出结论,OM3和OM4可能是M. Rosenbergii胚胎中微生物组合物转化的关键阶段。负责胚胎中微生物定植的主要因素主要是由虾施加的选择性压力,而水环境中的微生物群落的影响较低。本研究描述了在M.罗森伯古氏的胚胎发育中不同阶段的细菌群落,以及周围环境对微生物定植的影响。这些发现提供了有价值的信息,用于进一步研究检查甲壳类动物早期肠道菌群的形成。

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