The First Microbial Colonizers of the Human Gut: Composition, Activities, and Health Implications of the Infant Gut Microbiota

生物 肠道菌群 微生物群 基因组 共生 细菌 动物 生态位 利基 共同进化 疾病 人体微生物群 生态学 寄主(生物学) 免疫学 遗传学 基因 病理 栖息地 医学
作者
Christian Milani,Sabrina Duranti,Francesca Bottacini,Eoghan Casey,Francesca Turroni,Jennifer Mahony,Clara Belzer,Susana Delgado,Silvia Arboleya,Leonardo Mancabelli,Gabriele Andrea Lugli,Juan M. Rodrı́guez,Lars Bode,Willem M. de Vos,Miguel Gueimonde,Abelardo Margollés,Douwe van Sinderen,Marco Ventura
出处
期刊:Microbiology and Molecular Biology Reviews [American Society for Microbiology]
卷期号:81 (4) 被引量:1944
标识
DOI:10.1128/mmbr.00036-17
摘要

The human gut microbiota is engaged in multiple interactions affecting host health during the host's entire life span. Microbes colonize the neonatal gut immediately following birth. The establishment and interactive development of this early gut microbiota are believed to be (at least partially) driven and modulated by specific compounds present in human milk. It has been shown that certain genomes of infant gut commensals, in particular those of bifidobacterial species, are genetically adapted to utilize specific glycans of this human secretory fluid, thus representing a very intriguing example of host-microbe coevolution, where both partners are believed to benefit. In recent years, various metagenomic studies have tried to dissect the composition and functionality of the infant gut microbiome and to explore the distribution across the different ecological niches of the infant gut biogeography of the corresponding microbial consortia, including those corresponding to bacteria and viruses, in healthy and ill subjects. Such analyses have linked certain features of the microbiota/microbiome, such as reduced diversity or aberrant composition, to intestinal illnesses in infants or disease states that are manifested at later stages of life, including asthma, inflammatory bowel disease, and metabolic disorders. Thus, a growing number of studies have reported on how the early human gut microbiota composition/development may affect risk factors related to adult health conditions. This concept has fueled the development of strategies to shape the infant microbiota composition based on various functional food products. In this review, we describe the infant microbiota, the mechanisms that drive its establishment and composition, and how microbial consortia may be molded by natural or artificial interventions. Finally, we discuss the relevance of key microbial players of the infant gut microbiota, in particular bifidobacteria, with respect to their role in health and disease.
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