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High-throughput sequencing of gut microbiota in rainbow trout (Oncorhynchus mykiss) fed larval and pre-pupae stages of black soldier fly (Hermetia illucens)

机译:虹鳟鱼中肠道鳟鱼的高通量测序(Oncorhynchus mykiss)美联储幼虫和蛹前阶段的黑士兵飞(Hermetia Sillucens)

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摘要

Black soldier fly (Hermetia illucens) meal is a potential alternative to fishmeal and plant proteins in diets for farmed fish since it can be produced on organic waste substrates, requires little energy and water inputs and contains high levels of essential amino acids. Recent studies have partially replaced fishmeal with black soldier fly meal, however, research on their impact on gut microbiota of fish is limited. In a five week experiment, juvenile rainbow trout (Oncorhynchus mykiss) were fed either a reference diet based on fishmeal or three diets with 30% inclusion of black soldier fly meals in the form of pre-pupae, larvae or defatted-larvae. The combined luminal content and mucosa were collected from the distal intestine of three fish per tank with four tanks per diet (n = 12) and 16S rRNA gene amplicons were sequenced using the Illumina MiSeq platform. Feeding the insect-based diets increased the alpha-diversity of bacteria and abundance of lactic acid bacteria, which may be due to the addition of dietary chitin. Compared with fishmeal, feeding insects resulted in higher abundance of phyla Firmicutes and Actinobacteria with lower abundance of Proteobacteria. Fish fed the full-fat meals had higher abundance of Corynebacterium that was attributed to its ability to produce lipase and the high content of dietary lipids as a substrate. Bacillaceae was increased in fish fed both larvae diets and unchanged in the pre-pupae diet, which indicated that life-cycle stage of the insect influenced the gut microbiota. Based on these results, we found that feeding black soldier flies increased diversity and altered the composition of gut bacteria of rainbow trout, which were further influenced by life-cycle stage and lipid content of the insect meal.
机译:黑人士兵飞(Hermetia Sillucens)膳食是养殖和植物蛋白在养殖鱼类中的潜在替代品,因为它可以在有机废物基材上生产,需要很少的能量和水输入并含有高水平的必需氨基酸。最近的研究已经用黑士兵飞行部分取代了鱼粉,然而,对肠道微生物的影响的研究有限。在五周的实验中,少年彩虹鳟鱼(Oncorynchus mykiss)是根据鱼粉或三种饮食的参考饮食,其中三个饮食,以预先蛹,幼虫或脱脂幼虫的形式包含黑士兵飞行。从每罐的3个鱼的远端肠道收集组合的腔含量和粘膜,每次饮食四个罐(n = 12),并且使用illumina miseq平台测序16s rRNA基因扩增子。喂养基于昆虫的饮食增加了细菌的α-多样性和丰富的乳酸菌,这可能是由于添加膳食丁蛋白。与鱼粉相比,饲养昆虫导致较高丰富的植物近似和抗菌菌具有较低丰富的植物体。喂养全脂餐的鱼具有较高丰富的棒状杆菌,其归因于其产生脂肪酶和高含量的膳食脂质作为基材的能力。在食用幼虫饮食中的鱼类中溶扰芽孢杆菌在蛹前饮食中不变,这表明昆虫的生命周期阶段影响了肠道微生物。根据这些结果,我们发现喂养的黑色士兵才能增加多样性,并改变了彩虹鳟的肠道细菌的组成,这进一步受到昆虫膳食的生命周期阶段和脂质含量的影响。

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