Early life microbial succession in the gut follows common patterns in humans across the globe

Author:

Bottino Guilherme FahurORCID,Bonham Kevin S.ORCID,Patel FadheelaORCID,McCann ShelleyORCID,Zieff MichalORCID,Naspolini NathaliaORCID,Ho DanielORCID,Portlock TheoORCID,Joos RaphaelaORCID,Midani Firas S.ORCID,Schüroff PauloORCID,Das AnubhavORCID,Shennon InoliORCID,Wilson Brooke C.ORCID,O’Sullivan Justin M.ORCID,Britton Robert A.ORCID,Murray Deirdre M.ORCID,Kiely Mairead E.ORCID,Taddei Carla R.ORCID,Beltrão-Braga Patrícia C. B.ORCID,Campos Alline C.ORCID,Polanczyk Guilherme V.ORCID,Huttenhower CurtisORCID,Donald Kirsten A.ORCID,Klepac-Ceraj VanjaORCID

Abstract

AbstractCharacterizing the dynamics of microbial community succession in the infant gut microbiome is crucial for understanding child health and development, but no normative model currently exists. Here, we estimate child age using gut microbial taxonomic relative abundances from metagenomes, with high temporal resolution (±3 months) for the first 1.5 years of life. Using 3,154 samples from 1,827 infants across 12 countries, we trained a random forest model, achieving a root mean square error of 2.61 months. We identified key taxonomic predictors of age, including declines inBifidobacteriumspp. and increases inFaecalibacterium prausnitziiand Lachnospiraceae. Microbial succession patterns are conserved across infants from diverse human populations, suggesting universal developmental trajectories. Functional analysis confirmed trends in key microbial genes involved in feeding transitions and dietary exposures. This model provides a normative benchmark of “microbiome age” for assessing early gut maturation that can be used alongside other measures of child development.

Publisher

Cold Spring Harbor Laboratory

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