Zhang Meihong, Shi Suxin, Feng Yimei, Zhang Fengwenhui, Xiao Yuxuan, Li Xin, Pan Xingliang, Feng Yuqing, Liu Dan, Guo Yuming, Hu Yongfei
State Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Haidian District, Beijing 100193, China.
Department of Microbiology, Beijing General Station of Animal Husbandry, Chaoyang District, Beijing 100107, China.
ISME J. 2025 Jan 2;19(1). doi: 10.1093/ismejo/wraf076.
Applying synthetic microbial communities to manipulate the gut microbiota is a promising manner for reshaping the chicken gut microbial community. However, it remains elusive the role of a designed microbial community in chicken physiological metabolism and immune responses. In this study, we constructed a 10-member synthetic microbial community (SynComBac10) that recapitulated the phylogenetic diversity and functional capability of adult chicken intestinal microbiota. We found that early-life SynComBac10 exposure significantly enhanced chicken growth performance and facilitated the maturation of both the intestinal epithelial barrier function and the gut microbiota. Additionally, SynComBac10 promoted the pre-colonization and growth of segmented filamentous bacteria (SFB), which in turn induced Th17 cell-mediated immune responses, thereby conferring resistance to Salmonella infection. Through metagenomic sequencing, we assembled the genomes of two distinct species of SFB from the chicken gut microbiota, which displayed common metabolic deficiencies with SFB of other host origins. In silico analyses indicated that the SynComBac10-stimulated early establishment of SFB in the chicken intestine was likely through SynComBac10-derived metabolite cross-feeding. Our study demonstrated the pivotal role of a designed microbial consortium in promoting chicken gut homeostasis and anti-infection immunity, providing a new avenue for engineering chicken gut microbiota.
应用合成微生物群落来调控肠道微生物群是重塑鸡肠道微生物群落的一种有前景的方式。然而,设计的微生物群落在鸡的生理代谢和免疫反应中的作用仍不清楚。在本研究中,我们构建了一个由10个成员组成的合成微生物群落(SynComBac10),该群落概括了成年鸡肠道微生物群的系统发育多样性和功能能力。我们发现,在生命早期接触SynComBac10可显著提高鸡的生长性能,并促进肠道上皮屏障功能和肠道微生物群的成熟。此外,SynComBac10促进了分节丝状菌(SFB)的定殖前生长,进而诱导Th17细胞介导的免疫反应,从而赋予对沙门氏菌感染的抗性。通过宏基因组测序,我们从鸡肠道微生物群中组装了两种不同的SFB物种的基因组,它们与其他宿主来源的SFB表现出共同的代谢缺陷。计算机分析表明,SynComBac10刺激鸡肠道中SFB的早期建立可能是通过SynComBac10衍生的代谢物交叉喂养实现的。我们的研究证明了设计的微生物联合体在促进鸡肠道稳态和抗感染免疫中的关键作用,为改造鸡肠道微生物群提供了一条新途径。