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黑水虻(Hermetia illucens)介导的宿主环境微生物群落募集增强了废物生物转化。

Host-mediated environmental microbiome recruitment by black soldier fly (Hermetia illucens) enhances waste biotransformation.

作者信息

Li Zhe, Zhou Yuchen, Lv Lin, Long Yinguang, Dong Mengyao, Xiao Qi, Jia Xianyue, Ju Dechen, Sun Xiaowen, Huang Feng, Cai Minmin, Zhang Jibin, Yu Ziniu, Zheng Longyu

机构信息

National Key Laboratory of Agricultural Microbiology, National Engineering Research Center of Microbial Pesticides, College of Life Science and Technology, Huazhong Agricultural University, Wuhan, PR China; Hubei Hongshan Laboratory, Wuhan, PR China.

School of Life Sciences, Jianghan University, Wuhan, PR China.

出版信息

Waste Manag. 2025 Aug 1;204:114886. doi: 10.1016/j.wasman.2025.114886. Epub 2025 May 24.

Abstract

The black soldier fly larvae (BSFL) have demonstrated the ability to convert organic waste into high-quality proteins, lipids, and chitin on an industrial scale. This study aimed to examine the influence of exogenous microbes on the growth and development of BSFL by comparing Germ-free and normal BSFL that were reared on different substrates. Furthermore, the research evaluated the effects of microbes associated with the eggs. The results demonstrated that BSFL actively recruited specific functional microbes from their environment to facilitate growth and developmental processes. These recruited exogenous microbial consortia, originating from artificial substrates, kitchen waste, chicken manure, and egg-carrying microbiota, significantly enhanced Germ-free BSFL performance through improved larval viability, increased material conversion efficiency, elevated average body weight, and reduced pupal stage duration compared to Germ-free groups. The isolation and functional validation of intestinal microbiota identified Enterococcus, Bacillus, and Lactobacillus as core taxa for consortium formulation. This synthetic microbial community exhibited robust growth-promoting effects on BSFL, with maximal efficacy observed in chicken manure bioconversion systems, achieving 72.1 %, 193.6 % and 439.59 % enhancements in larval survival, biomass accumulation and feed conversion rate, respectively, alongside a 62.4 % reduction in prepupal development time compared to non-inoculated controls. Mechanistic analysis revealed a host-driven microbial recruitment strategy wherein BSFL selectively enriched functional symbionts to optimize environmental adaptation. These mutualistic interactions enhanced larval niche specialization and waste metabolic capacity, demonstrating scalable potential for circular waste valorization and sustainable bioremediation protocols.

摘要

黑水虻幼虫已证明能够在工业规模上将有机废物转化为高质量的蛋白质、脂质和几丁质。本研究旨在通过比较在不同底物上饲养的无菌和正常黑水虻幼虫,研究外源微生物对黑水虻生长发育的影响。此外,该研究还评估了与卵相关的微生物的作用。结果表明,黑水虻幼虫会从其环境中积极招募特定的功能性微生物,以促进生长和发育过程。这些从人工底物、厨余垃圾、鸡粪和携带卵的微生物群中招募的外源微生物群落,与无菌组相比,通过提高幼虫活力、提高物质转化效率、增加平均体重和缩短蛹期,显著提高了无菌黑水虻幼虫的性能。肠道微生物群的分离和功能验证确定肠球菌、芽孢杆菌和乳酸杆菌为群落组成的核心分类群。这种合成微生物群落对黑水虻幼虫具有强大的促生长作用,在鸡粪生物转化系统中观察到最大功效,与未接种对照相比,幼虫存活率、生物量积累和饲料转化率分别提高了72.1%、193.6%和439.59%,预蛹发育时间缩短了62.4%。机制分析揭示了一种宿主驱动的微生物招募策略,即黑水虻幼虫选择性地富集功能性共生体以优化环境适应性。这些互利相互作用增强了幼虫的生态位特化和废物代谢能力,展示了循环废物增值和可持续生物修复方案的可扩展潜力。

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