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首页> 外文期刊>Scientific reports. >Individual Apostichopus japonicus fecal microbiome reveals a link with polyhydroxybutyrate producers in host growth gaps
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Individual Apostichopus japonicus fecal microbiome reveals a link with polyhydroxybutyrate producers in host growth gaps

机译:个体Apostichopus japonicus feecal microbiome揭示了宿主生长间隙中的聚羟基丁酸盐生产商的联系

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Gut microbiome shapes various aspects of a host's physiology, but these functions in aquatic animal hosts have yet to be fully investigated. The sea cucumber Apostichopus japonicus Selenka is one such example. The large growth gap in their body size has delayed the development of intensive aquaculture, nevertheless the species is in urgent need of conservation. To understand possible contributions of the gut microbiome to its host's growth, individual fecal microbiome comparisons were performed. High-throughput 16S rRNA sequencing revealed significantly different microbiota in larger and smaller individuals; Rhodobacterales in particular was the most significantly abundant bacterial group in the larger specimens. Further shotgun metagenome of representative samples revealed a significant abundance of microbiome retaining polyhydroxybutyrate (PHB) metabolism genes in the largest individual. The PHB metabolism reads were potentially derived from Rhodobacterales. These results imply a possible link between microbial PHB producers and potential growth promotion in Deuterostomia marine invertebrates.
机译:肠道微生物组塑造了宿主生理的各个方面,但水生动物宿主中的这些功能尚未得到全面调查。海参Apostichopus japonicus selenka是这样的一个例子。他们体型的大增长缺口延迟了密集水产养殖的发展,尽管如此,这些物种迫切需要保护。要了解肠道微生物组的可能贡献,以其宿主的增长,进行个体粪便微生物组比较。高通量16S rRNA测序显示较大和更小的个体的显着不同的微生物蛋白;特别是乳菌细菌是较大标本中最显着的细菌组。进一步的代表性样品的霰弹枪偏心组揭示了最大个体中的显着丰富的微生物组留量的聚羟基丁酸酯(PHB)代谢基因。 PHB代谢读数似乎源自乳菌。这些结果暗示了微生物PHB生产者与德斗胃癌海洋途中的潜在生长促进之间可能的联系。

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