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家蝇幼虫(Hermetia illucens)饲养过程中的微生物群落动态及其对开发潜力的影响。

Microbial Community Dynamics during Rearing of Black Soldier Fly Larvae (Hermetia illucens) and Impact on Exploitation Potential.

机构信息

KU Leuven, Department of Microbial and Molecular Systems (MS), Lab4Food, Campus Geel, Geel, Belgium.

KU Leuven, Leuven Food Science and Nutrition Research Centre (LFoRCe), Leuven, Belgium.

出版信息

Appl Environ Microbiol. 2018 Apr 16;84(9). doi: 10.1128/AEM.02722-17. Print 2018 May 1.

Abstract

The need to increase sustainability in agriculture, to ensure food security for the future generations, is leading to the emergence of industrial rearing facilities for insects. One promising species being industrially reared as an alternative protein source for animal feed and as a raw material for the chemical industry is the black soldier fly (). However, scientific knowledge toward the optimization of the productivity for this insect is scarce. One knowledge gap concerns the impact of the microbial community associated with on the performance and health of this insect. In this review, the first steps in the characterization of the microbiota in and the analysis of substrate-dependent dynamics in its composition are summarized and discussed. Furthermore, this review zooms in on the interactions between microorganisms and the insect during development. Finally, attention is paid to how the microbiome research can lead to alternative valorization strategies for , such as (i) the manipulation of the microbiota to optimize insect biomass production and (ii) the exploitation of the -microbiota interplay for the discovery of new enzymes and novel antimicrobial strategies based on immunity using either the whole organism or its molecules. The next decade promises to be extremely interesting for this research field and will see an emergence of the microbiological optimization of as a sustainable insect for industrial rearing and the exploitation of its microbiome for novel biotechnological applications.

摘要

需要提高农业的可持续性,以确保子孙后代的粮食安全,这导致了昆虫工业养殖设施的出现。正在工业化养殖的一种有前途的昆虫是黑蝇(),它可以作为动物饲料的替代蛋白质来源和化学工业的原材料。然而,关于优化这种昆虫生产力的科学知识还很缺乏。一个知识差距涉及与 相关的微生物群落对这种昆虫的性能和健康的影响。在这篇综述中,总结并讨论了 微生物组特征描述的第一步,以及其组成在基质依赖性方面的动态分析。此外,本文还重点介绍了在 发育过程中微生物与昆虫之间的相互作用。最后,关注微生物组研究如何为 带来替代的增值策略,例如:(i)操纵微生物群来优化昆虫生物量的生产;(ii)利用 免疫,基于整个生物体或其分子,探索微生物-昆虫相互作用,发现新的酶和新型抗菌策略。未来十年,这个研究领域将极具吸引力,微生物优化 将成为一种可持续的工业养殖昆虫,其微生物组将被开发用于新的生物技术应用。

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