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新型虾类模型日本沼虾性腺发育过程中,肠道而非肝胰腺微生物群多样性的快速变化。

Rapid Change of Microbiota Diversity in the Gut but Not the Hepatopancreas During Gonadal Development of the New Shrimp Model Neocaridina denticulata.

作者信息

Cheung Man Kit, Yip Ho Yin, Nong Wenyan, Law Patrick Tik Wan, Chu Ka Hou, Kwan Hoi Shan, Hui Jerome Ho Lam

机构信息

School of Life Sciences, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR.

Simon F.S. Li Marine Science Laboratory, School of Life Sciences, Centre for Soybean Research, Partner State Key Laboratory of Agrobiotechnology, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR.

出版信息

Mar Biotechnol (NY). 2015 Dec;17(6):811-9. doi: 10.1007/s10126-015-9662-8. Epub 2015 Aug 30.

DOI:10.1007/s10126-015-9662-8
PMID:26319409
Abstract

During evolution of animals, their co-evolution with bacteria has generally been ignored. Recent studies have provided evidences that the symbiotic bacteria in the animal gut can either be essential or contributing to the plasticity of the host. The Crustacea includes crab, crayfish, lobster, and shrimp and represents the second largest subphylum on the planet. Although there are already studies investigating the intestinal bacterial communities in crustaceans, none of them has examined the microbiota in different parts of the digestive system during the gonad development of the host. Here, we utilized a new shrimp model Neocaridina denticulata and sequenced the 16S rRNA using the Ion Torrent platform to survey the bacterial populations colonizing the hepatopancreas, foregut, and intestine, including midgut and hindgut, of the early, mid, and late ovarian maturation stages of the shrimp. The predominant bacteria phylum was found to be Proteobacteria, with more than 80 % reads from the gut flora at the early gonad development belonged to a Coxiella-type bacterium. Distinct bacterial communities can be detected between the hepatopancreas and gut, although no significant difference could be revealed between the different regions of the gut investigated. Surprisingly, during the gonad development, bacterial diversity changed rapidly in the gut but not the hepatopancreas. This study provides the first evidence that microbiota modified differentially in specific regions of the digestive tract during gonadal development of crustaceans.

摘要

在动物进化过程中,它们与细菌的共同进化通常被忽视。最近的研究提供了证据,表明动物肠道中的共生细菌对宿主的可塑性可能至关重要或有促进作用。甲壳纲动物包括螃蟹、小龙虾、龙虾和虾,是地球上第二大亚门。尽管已有研究调查甲壳纲动物的肠道细菌群落,但没有一项研究在宿主性腺发育期间检查消化系统不同部位的微生物群。在这里,我们利用一种新的虾模型——秀丽新小杆虾,并使用离子激流平台对16S rRNA进行测序,以调查在虾卵巢成熟早期、中期和晚期定殖于肝胰腺、前肠和包括中肠和后肠在内的肠道中的细菌种群。结果发现,优势细菌门为变形菌门,在性腺发育早期,超过80%的肠道菌群读数属于一种柯克斯氏体属细菌。虽然在所研究的肠道不同区域之间未发现显著差异,但在肝胰腺和肠道之间可以检测到不同的细菌群落。令人惊讶的是,在性腺发育过程中,肠道中的细菌多样性迅速变化,而肝胰腺中的细菌多样性没有变化。这项研究首次证明,在甲壳纲动物性腺发育期间,消化道特定区域的微生物群会发生不同的变化。

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