Dissimilarity of microbial diversity of pond water, shrimp intestine and sediment in Aquamimicry system

被引:0
作者
Shenzheng Zeng
Sukontorn Khoruamkid
Warinphorn Kongpakdee
Dongdong Wei
Lingfei Yu
Hao Wang
Zhixuan Deng
Shaoping Weng
Zhijian Huang
Jianguo He
Kriengkrai Satapornvanit
机构
[1] Sun Yat-Sen University,State Key Laboratory of Biocontrol/Southern Marine Sciences and Engineering Guangdong Laboratory (Zhuhai), School of Marine Sciences
[2] Kasetsart University,Department of Fisheries, Faculty of Fisheries
[3] Sun Yat-Sen University,Institute of Aquatic Economic Animals and Guangdong Province Key Laboratory for Aquatic Economic Animals, School of Life Sciences
[4] Sun Yat-Sen University,Guangdong Provincial Key Laboratory of Marine Resources and Coastal Engineering, School of Marine Sciences
来源
AMB Express | / 10卷
关键词
Pacific white shrimp; Aquamimicry system; Microbial community; Water; Sediment; Intestine;
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摘要
The Pacific white shrimp, with the largest production in shrimp industry, has suffered from multiple severe viral and bacterial diseases, which calls for a more reliable and environmentally friendly system to promote shrimp culture. The “Aquamimicry system”, mimicking the nature of aquatic ecosystems for the well-being of aquatic animals, has effectively increased shrimp production and been adapted in many countries. However, the microbial communities in the shrimp intestine and surrounding environment that act as an essential component in Aquamimicry remain largely unknown. In this study, the microbial composition and diversity alteration in shrimp intestine, surrounding water and sediment at different culture stages were investigated by high throughput sequencing of 16S rRNA gene, obtaining 13,562 operational taxonomic units (OTUs). Results showed that the microbial communities in shrimp intestine and surrounding environment were significantly distinct from each other, and 23 distinguished taxa for each habitat were further characterized. The microbial communities differed significantly at different culture stages, confirmed by a great number of OTUs dramatically altered during the culture period. A small part of these altered OTUs were shared between shrimp intestine and surrounding environment, suggesting that the microbial alteration of intestine was not consistent with that of water and sediment. Regarding the high production of Aquamimicry farm used as a case in this study, the dissimilarity between intestinal and surrounding microbiota might be considered as a potential indicator for healthy status of shrimp farming, which provided hints on the appropriate culture practices to improve shrimp production.
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