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黑蝇幼虫肠道细菌群落的动态及其对昆虫生长发育的影响。

Dynamics of the intestinal bacterial community in black soldier fly larval guts and its influence on insect growth and development.

机构信息

Hubei Key Laboratory of Genetic Regulation and Integrative Biology, Institute of Entomology, School of Life Sciences, Central China Normal University, Wuhan, China.

CAS Key Laboratory of Insect Developmental and Evolutionary Biology, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, China.

出版信息

Insect Sci. 2023 Aug;30(4):947-963. doi: 10.1111/1744-7917.13095. Epub 2022 Aug 14.

Abstract

Black soldier fly (BSF), Hermetia illucens (Diptera: Stratiomyidae), is a prominent insect for the bioconversion of various organic wastes. As a saprotrophic insect, the BSF inhabits microbe-rich environments. However, the influences of the intestinal microorganisms on BSF growth and development are not very clear. In this study, the dynamics of the intestinal bacterial community of BSF larvae (BSFL) were analyzed using pyrosequencing. Actinobacteria, Bacteroidetes, Firmicutes, and Proteobacteria were the most prevalent bacterial phyla in the intestines of all larval instars. The dynamic changes in bacterial community compositions among different larval instars were striking at the genus level. Klebsiella, Clostridium, Providencia, and Dysgonomonas were the relatively most abundant bacteria in the 1st- to 4th-instar BSFL, respectively. Dysgonomonas and Providencia also dominated the 5th- and 6th-instar larvae, at ratios of 31.1% and 47.2%, respectively. In total, 148 bacterial strains affiliated with 20 genera were isolated on different media under aerobic and anaerobic conditions. Among them, 6 bacteria, BSF1-BSF6, were selected for further study. The inoculation of the 6 isolates independently into germ-free BSFL feeding on an artificial diet showed that all the bacteria, except BSF4, significantly promoted BSF growth and development compared with the germ-free control. Citrobacter, Dysgonomonas, Klebsiella, Ochrobactrum, and Providencia promoted BSF development significantly by increasing the weight gains of larvae and pupae, as well as increasing the prepupae and eclosion rates. In addition, Citrobacter, Klebsiella and Providencia shortened the BSF life cycle significantly. The results illustrate the promotive effects of intestinal bacteria on BSF growth and development.

摘要

黑水虻(BSF),Hermetia illucens(双翅目:Stratiomyidae),是一种重要的昆虫,可用于各种有机废物的生物转化。作为一种腐生昆虫,BSF 栖息在富含微生物的环境中。然而,肠道微生物对 BSF 生长和发育的影响尚不清楚。在本研究中,采用焦磷酸测序技术分析了 BSF 幼虫(BSFL)肠道细菌群落的动态变化。厚壁菌门、拟杆菌门、Firmicutes 和 Proteobacteria 是所有幼虫龄期肠道中最普遍的细菌门。不同幼虫龄期肠道细菌群落组成的动态变化在属水平上非常显著。在 1 至 4 龄 BSFL 中,Klebsiella、Clostridium、Providencia 和 Dysgonomonas 是相对丰度较高的细菌,分别占 1 至 4 龄 BSFL 的 31.1%、31.1%、31.1%和 31.1%。在总共 148 株细菌中,有 20 个属的细菌可以在有氧和无氧条件下在不同的培养基上分离出来。其中,有 6 株细菌(BSF1-BSF6)被选择进行进一步研究。将这 6 株菌分别接种到无菌 BSFL 喂养的人工饲料中,结果表明,除了 BSF4 之外,所有细菌都显著促进了无菌 BSFL 的生长和发育,与无菌对照相比,BSFL 的体重增加、蛹重增加、预蛹化蛹率和羽化率均显著提高。此外,Citrobacter、Dysgonomonas、Klebsiella、Ochrobactrum 和 Providencia 还显著缩短了 BSF 的生命周期。这些结果说明了肠道细菌对 BSF 生长和发育的促进作用。

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