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首页> 外文期刊>Aquaculture Research >Intestinal microbiota of white shrimp, Litopenaeus vannamei, fed diets containing Bacillus subtilis E20-fermented soybean meal (FSBM) or an antimicrobial peptide derived from B. subtilis E20-FSBM
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Intestinal microbiota of white shrimp, Litopenaeus vannamei, fed diets containing Bacillus subtilis E20-fermented soybean meal (FSBM) or an antimicrobial peptide derived from B. subtilis E20-FSBM

机译:白色虾的肠道微生物,Litopenaeus vannamei,喂食含芽孢杆菌E20发酵大豆膳食(FSBM)或衍生自B.枯草芽孢杆菌E20-FSBM的抗微生物肽的饮食

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摘要

The purpose of the present study is to profile the microfloral structure in the intestines of the white shrimp, Litopenaeus vannamei, after being fed a control diet, in comparison with the diets containing Bacillus subtilis E20-fermented soybean meal (FSBM) or an antimicrobial peptide (AMP) isolated from B. subtilis E20-FSBM (diets designated FSBMD and AMPD, respectively) for 60 days. Metagenomic data showed detection of eight phyla, 20 classes, 40 orders, 68 families and 96 genera. Despite no statistically significant difference, an evaluation of microbial diversity recorded higher species richness, Shannon-Weaver diversity index and evenness in the AMPD and FSBMD groups, compared to the control diet group. Venn diagrams showed that 58 of the operational taxonomic units (OTUs) were shared among the control, FSBMD and AMPD groups, but additional beneficial microbes were only found in the FSBMD and AMPD groups. In addition to the augmentation of beneficial bacteria in the FSBMD and AMPD groups, the abundance of potential pathogens, Vibrio and Flavobacterium, was lower in the gut of shrimp fed the FSBMD and AMPD. The results clearly suggest that the FSBMD and AMPD have the capability to change the microfloral structure of shrimp intestines and could be used for disease prevention in shrimp aquaculture.
机译:本研究的目的是在喂养对照饮食后,将微氯结构概述白虾Litopenaeus vannamei,与含有枯草芽孢杆菌E20发酵的大豆粕(FSBM)或抗微生物肽的饮食相比(AMP)从B.枯草芽孢杆菌E20-FSBM中分离(分别指定FSBMD和AMPD)60天。 Metagenomic数据显示检测八个耕作,20级,40个订单,68个家庭和96属。尽管没有统计学意义差异,但与对照饮食组相比,虽然无统计学变化,但微生物多样性记录了较高的物种丰富性,Shannon-Weaver多样性指数和均匀性,以及对照饮食组。 Venn图表明,在对照,FSBMD和AMPD组中共用了58个操作分类单位(OTU),但仅在FSBMD和AMPD组中发现了其他有益的微生物。除了FSBMD和AMPD组中的有益细菌的增强外,在饲喂FSBMD和AMPD的虾的肠道中,潜在病原体,弧菌和黄杆菌的丰富均较低。结果清楚地表明,FSBMD和AMPD具有改变虾肠的微氯结构,可用于虾水产养殖中的疾病预防。

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