生物
微生物群
免疫系统
梯形物种
基因组
双歧杆菌
细菌
发酵
微生物学
殖民地化
免疫
人体微生物群
生态学
厌氧菌
肠道菌群
微生物代谢
微生物种群生物学
计算生物学
人类微生物组计划
动物
乳酸菌
肠道微生物群
适应(眼睛)
乳杆菌科
益生元
屎肠球菌
人类健康
生物化学
寄主(生物学)
代谢途径
乳球菌
作者
Javiera Vásquez-Dean,Andrés Canales,Camila A. Orellana,D Garrido
标识
DOI:10.1146/annurev-food-052924-065321
摘要
Bifidobacterium plays a keystone role in the ecological assembly of the infant-gut microbiome and in shaping host immune and metabolic development. These anaerobic bacteria possess specialized transporters and glycosyl hydrolases that enable the degradation of human milk oligosaccharides (HMOs), driving early microbial succession through coexistence, competition, and priority effects. Their fermentation products, mainly acetate and lactate, acidify the gut environment, inhibit pathogens, and sustain cross-feeding with butyrate-producing microbes, whereas aromatic lactic acids contribute to immune modulation. Ecological and clinical evidence indicates that loss of Bifidobacterium perturbs community structure and increases disease risk. Understanding these interactions has guided the design of HMO-based and synbiotic strategies that aim to restore healthy colonization patterns. Ongoing efforts now integrate ecological, metabolic, and computational approaches to better predict and replicate the health-promoting functions of Bifidobacterium throughout life.
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