Using kin discrimination to construct synthetic microbial communities of Bacillus subtilis strains impacts the growth of black soldier fly larvae.

IF 2.9 1区 农林科学 Q1 ENTOMOLOGY
Insect Science Pub Date : 2024-12-01 Epub Date: 2024-03-17 DOI:10.1111/1744-7917.13356
Jun-Hui Zhao, Ping Cheng, Yi Wang, Xun Yan, Zhi-Min Xu, Dong-Hai Peng, Guo-Hui Yu, Ming-Wei Shao
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Abstract

Using synthetic microbial communities to promote host growth is an effective approach. However, the construction of such communities lacks theoretical guidance. Kin discrimination is an effective means by which strains can recognize themselves from non-self, and construct competitive microbial communities to produce more secondary metabolites. However, the construction of cooperative communities benefits from the widespread use of beneficial microorganisms. We used kin discrimination to construct synthetic communities (SCs) comprising 13 Bacillus subtilis strains from the surface and gut of black soldier fly (BSF) larvae. We assessed larval growth promotion in a pigeon manure system and found that the synthetic community comprising 4 strains (SC 4) had the most profound effect. Genomic analyses of these 4 strains revealed that their complementary functional genes underpinned the robust functionality of the cooperative synthetic community, highlighting the importance of strain diversity. After analyzing the bacterial composition of BSF larvae and the pigeon manure substrate, we observed that SC 4 altered the bacterial abundance in both the larval gut and pigeon manure. This also influenced microbial metabolic functions and co-occurrence network complexity. Kin discrimination facilitates the rapid construction of synthetic communities. The positive effects of SC 4 on larval weight gain resulted from the functional redundancy and complementarity among the strains. Furthermore, SC 4 may enhance larval growth by inducing shifts in the bacterial composition of the larval gut and pigeon manure. This elucidated how the SC promoted larval growth by regulating bacterial composition and provided theoretical guidance for the construction of SCs.

Abstract Image

利用亲缘鉴别构建枯草芽孢杆菌菌株的合成微生物群落,影响黑兵蝇幼虫的生长。
利用合成微生物群落促进宿主生长是一种有效的方法。然而,这种群落的构建缺乏理论指导。亲缘辨别是一种有效的方法,通过这种方法,菌株可以识别自身与非自身,并构建竞争性微生物群落以产生更多的次级代谢产物。然而,合作群落的构建得益于有益微生物的广泛使用。我们利用亲缘识别技术构建了由 13 株枯草芽孢杆菌(Bacillus subtilis)菌株组成的合成群落(SCs),这些菌株来自黑纹伊蚊(BSF)幼虫的体表和肠道。我们评估了鸽粪系统中幼虫的生长促进作用,发现由 4 个菌株组成的合成群落(SC 4)具有最显著的效果。对这 4 株菌株的基因组分析表明,它们互补的功能基因是合作合成群落强大功能的基础,这凸显了菌株多样性的重要性。在分析了 BSF 幼虫和鸽粪基质的细菌组成后,我们观察到 SC 4 改变了幼虫肠道和鸽粪中的细菌丰度。这也影响了微生物的代谢功能和共生网络的复杂性。亲属鉴别有助于快速构建合成群落。SC 4 对幼虫增重的积极影响来自于菌株之间的功能冗余和互补性。此外,SC 4 可通过诱导幼虫肠道和鸽粪中细菌组成的变化来促进幼虫的生长。这阐明了SC如何通过调节细菌组成促进幼虫生长,并为构建SC提供了理论指导。
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来源期刊
Insect Science
Insect Science 生物-昆虫学
CiteScore
7.80
自引率
5.00%
发文量
1379
审稿时长
6.0 months
期刊介绍: Insect Science is an English-language journal, which publishes original research articles dealing with all fields of research in into insects and other terrestrial arthropods. Papers in any of the following fields will be considered: ecology, behavior, biogeography, physiology, biochemistry, sociobiology, phylogeny, pest management, and exotic incursions. The emphasis of the journal is on the adaptation and evolutionary biology of insects from the molecular to the ecosystem level. Reviews, mini reviews and letters to the editor, book reviews, and information about academic activities of the society are also published.
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