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棉籽压榨饼作为工业化养殖黑水虻幼虫的潜在饲料会引发其肠道细菌和真菌微生物群的适应性变化。

Cottonseed Press Cake as a Potential Diet for Industrially Farmed Black Soldier Fly Larvae Triggers Adaptations of Their Bacterial and Fungal Gut Microbiota.

作者信息

Tegtmeier Dorothee, Hurka Sabine, Klüber Patrick, Brinkrolf Karina, Heise Philipp, Vilcinskas Andreas

机构信息

Department of Bioresources, Fraunhofer Institute for Molecular Biology and Applied Ecology, Giessen, Germany.

Institute for Insect Biotechnology, Justus Liebig University Giessen, Giessen, Germany.

出版信息

Front Microbiol. 2021 Mar 29;12:634503. doi: 10.3389/fmicb.2021.634503. eCollection 2021.

Abstract

Black soldier fly larvae (, Diptera: Stratiomyidae) are used for the bioconversion of organic side products into valuable compounds such as proteins, lipids and chitin. However, the economic competitiveness of farmed insects compared to conventional protein production systems in agriculture and aquaculture depends on the availability of large quantities of inexpensive insect feed. Cottonseed press cake (CPC) is a side-stream of cotton production that is rich in proteins and lipids but unsuitable as feed for several farmed animals, except ruminants, due to the presence of the anti-nutritional sesquiterpenoid gossypol. Here, we tested CPC as a feed for black soldier fly larvae and studied the impact of this diet on the gut microbiome. Larvae reared on CPC developed normally and even showed a shorter life-cycle, but were smaller at the end of larval development than control larvae reared on chicken feed. The adaptability of the larvae to different diets is mediated by their versatile gut microbiome, which facilitates digestion and detoxification. We therefore used amplicon sequencing to analyze the bacterial and fungal communities associated with larvae reared on each diet, revealing differences between the larval guts and frass (residual feed substrate) as well as differences between the two diet groups. For example, and Aspergillaceae were significantly enriched in guts of the CPC diet group and may help to metabolize compounds such as gossypol. Potentially probiotic yeasts and beneficial , which presumably belong to the core microbiota, were detected in high relative abundance in the gut and frass, indicating a functional role of these microbes, especially the protection against pathogens. We conclude that CPC may be suitable as an inexpensive and environmentally sustainable feed for the industrial rearing of black soldier flies.

摘要

黑水虻幼虫(双翅目:水虻科)可用于将有机副产品生物转化为有价值的化合物,如蛋白质、脂质和几丁质。然而,与农业和水产养殖中的传统蛋白质生产系统相比,养殖昆虫的经济竞争力取决于大量廉价昆虫饲料的可得性。棉籽压榨饼(CPC)是棉花生产的一种副产品,富含蛋白质和脂质,但由于存在抗营养倍半萜类棉酚,除反刍动物外,不适用于几种养殖动物的饲料。在此,我们测试了CPC作为黑水虻幼虫饲料的效果,并研究了这种饮食对肠道微生物群的影响。以CPC饲养的幼虫正常发育,甚至生命周期更短,但在幼虫发育结束时比以鸡饲料饲养 的对照幼虫更小。幼虫对不同饮食的适应性由其多功能肠道微生物群介导,该微生物群有助于消化和解毒。因此,我们使用扩增子测序来分析与每种饮食饲养的幼虫相关的细菌和真菌群落,揭示幼虫肠道和粪便(残留饲料底物)之间的差异以及两个饮食组之间的差异。例如,在CPC饮食组的肠道中 和曲霉科显著富集,可能有助于代谢棉酚等化合物。在肠道和粪便中检测到相对丰度较高的潜在益生菌酵母和有益 ,推测它们属于核心微生物群,表明这些微生物具有功能作用,尤其是对病原体的保护作用。我们得出结论,CPC可能适合作为黑水虻工业养殖的廉价且环境可持续的饲料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7a8/8039154/6a85cfde5f67/fmicb-12-634503-g001.jpg

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