利用长读扩增子测序技术鉴定虹鳟鱼肠道微生物组核心属及物种水平微生物群落分析

IF 1.1 Q3 FISHERIES
Mio Takeuchi, Kazuhiro Sugahara
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引用次数: 0

摘要

虹鳟(Oncorhynchus mykiss)是全球重要的水产养殖品种。研究了各种饲料添加剂抑制疾病或减少鱼粉的使用。这些操作会影响肠道微生物群,这被认为与宿主健康有关。然而,关于健康肠道微生物组成的共识仍有待建立。本研究旨在通过对39篇文献的系统回顾,鉴定虹鳟鱼肠道中的核心属,并利用针对全长16S rRNA基因的长读扩增子测序确定候选核心种。通过系统综述,将支原体、气单胞菌、梭状芽胞菌、Deefgea、链球菌、Cetobacterium、乳杆菌、乳球菌、甲基杆菌、棒状杆菌、Shewanella和葡萄球菌确定为虹鳟鱼原生肠道微生物群的核心属。此外,通过长读扩增子测序,我们确定了虹鳟鱼核心属的候选核心种,如sakei Latilactobacillus sakei、Clostridium gasigeness、Deefgea piscis和Pseudomonas yamanorum。这些发现可能最终有助于水产养殖操作技术的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Systematic Literature Review Identifying Core Genera in the Gut Microbiome of Rainbow Trout (Oncorhynchus mykiss) and Species-level Microbial Community Analysis Using Long-Read Amplicon Sequencing

Systematic Literature Review Identifying Core Genera in the Gut Microbiome of Rainbow Trout (Oncorhynchus mykiss) and Species-level Microbial Community Analysis Using Long-Read Amplicon Sequencing

Rainbow trout (Oncorhynchus mykiss) is an important fish in global aquaculture. Various feed additives to suppress disease or reduce fish meal use have been studied. These manipulations influence the gut microbiome, which is considered to be linked to host health. However, a consensus remains to be established on the healthy gut microbiome composition. This study aimed to identify core genera in the gut of rainbow trout via a systematic review of 39 articles and determine candidate core species using long-read amplicon sequencing targeting the full-length 16S rRNA gene. Mycoplasma, Aeromonas, Clostridium, Deefgea, Streptococcus, Cetobacterium, Lactobacillus, Lactococcus, Methylobacterium, Corynebacterium, Shewanella and Staphylococcus were identified as core genera in the autochthonous gut microbiome of rainbow trout based on the systematic review. In addition, through long-read amplicon sequencing, we identified candidate core species of the core genera of rainbow trout, such as Latilactobacillus sakei, Clostridium gasigeness, Deefgea piscis and Pseudomonas yamanorum. These findings may ultimately contribute to the development of manipulation technologies in aquaculture.

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