首页> 外文期刊>Journal of the World Aquaculture Society >Microbial community analysis of water, foregut, and hindgut during growth of Pacific white shrimp, Litopenaeus vannamei, in closed-system aquaculture
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Microbial community analysis of water, foregut, and hindgut during growth of Pacific white shrimp, Litopenaeus vannamei, in closed-system aquaculture

机译:闭式系统养殖中太平洋白对虾凡纳滨对虾生长过程中水,前肠和后肠的微生物群落分析

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摘要

In closed recirculating systems, a particulate matter consisting of bacteria, algae, fungi, and detritus develops spontaneously. This microbial floc can serve as a high-protein food source for finfish and shellfish and has the potential to supplement the protein required in shrimp feed. To advance the use of microbial floc as a feed supplement, it is necessary to manipulate its microbial components, which requires thorough characterization of the bacterial components. Pacific white shrimp, Litopenaeus vannamei, were raised in a closed recirculating system, and water was compared to the contents of shrimp foreguts and hindguts. Water consistently contained less microbial biomass than did shrimp guts, but 16S rDNA sequences indicated that water was more diverse than shrimp guts. Phylogenetic analysis of 16S rDNA sequences retrieved from water and shrimp foregut grouped these sequences into various unrelated generic clusters. Fatty acid analysis demonstrated that shrimp feed was not a major contributor of microbial fatty acids to shrimp tanks, as the feed mostly contained polyunsaturated fatty acids, which are typically found only in eukaryotes. It is hoped that elucidating more details about the various components of microbial floc will help in understanding its development and will lead to its use as a high-protein feed supplement.
机译:在封闭的循环系统中,由细菌,藻类,真菌和碎屑组成的颗粒物会自发形成。这种微生物絮凝物可以作为有鳍鱼类和贝类的高蛋白食物来源,并具有补充虾饲料所需蛋白质的潜力。为了促进微生物絮凝物作为饲料补充剂的使用,必须操纵其微生物成分,这需要对细菌成分进行全面表征。在封闭的循环系统中饲养太平洋白虾南美白对虾(Litopenaeus vannamei),并将水与虾前肠和后肠的含量进行比较。水的微生物生物量始终少于虾肠,但是16S rDNA序列显示水比虾肠更多样化。从水和虾前肠中检索到的16S rDNA序列的系统发生分析将这些序列分为各种不相关的通用簇。脂肪酸分析表明,虾饲料不是虾缸微生物微生物脂肪酸的主要来源,因为该饲料主要含有多不饱和脂肪酸,通常仅在真核生物中才能发现。希望阐明有关微生物絮凝物各个组成部分的更多细节将有助于理解其发展,并将其用作高蛋白饲料补充剂。

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