133: Long-read meta-pangenomics links gut genomes to child growth episode artwork

EPISODE · Sep 10, 2025 · 24 MIN

133: Long-read meta-pangenomics links gut genomes to child growth

from Base by Base · host Gustavo Barra

Minich JJ et al., Cell - Minich et al. apply PacBio and Oxford Nanopore long‑read metagenomics to generate 986 complete metagenome‑assembled genomes from Malawian toddler fecal samples, then use pangenome analyses, mGWAS and machine learning to link microbial genes, strains and genome stability to child linear growth and breastfeeding. Key terms: long-read metagenomics, cMAGs, pangenome, pediatric undernutrition, microbial GWAS. Study Highlights:Long‑read sequencing (PacBio, ONT) recovered far more complete genomes per Gbp than short reads, yielding 986 cMAGs (839 circular) across 47 samples and an expanded 210-sample set. Pangenome and microbial GWAS analyses identified gene-level associations with linear growth and breastfeeding, including annotated hits such as arnC in multiple clades. Machine learning found microbial species predictive of linear growth, while longitudinal genome comparisons showed greater within-strain genomic instability and prophage dynamics in children with declining length‑for‑age Z scores. PacBio with metaMDBG produced the highest-quality and most cost‑effective cMAGs in this study. Conclusion:High-throughput long‑read metagenomics enables recovery of near-complete gut genomes at scale, allowing species‑constrained pangenome and mGWAS analyses that reveal gene- and genome-level microbial associations with pediatric linear growth and breastfeeding status. Music:Enjoy the music based on this article at the end of the episode. Article title:Culture-independent meta-pangenomics enabled by long-read metagenomics reveals associations with pediatric undernutrition First author:Minich JJ Journal:Cell DOI:10.1016/j.cell.2025.08.020 Reference:Minich JJ, Allsing N, Din MO, et al. Culture-independent meta-pangenomics enabled by long-read metagenomics reveals associations with pediatric undernutrition. Cell. 2025;188:1–21. https://doi.org/10.1016/j.cell.2025.08.020 License:This episode is based on an open-access article published under the Creative Commons Attribution 4.0 International License (CC BY 4.0) – https://creativecommons.org/licenses/by/4.0/ Support:Base by Base is independent and ad-free — no sponsors, no paywall. If an episode was worth your time, chip in and keep the papers audited and the original songs coming:❤️ Support monthly: https://buy.stripe.com/cNifZhclVebvagk2JDgEg01☕ One-time donation: https://donate.stripe.com/7sY4gz71B2sN3RWac5gEg00 More at basebybase.com On PaperCast Base by Base you'll discover the latest in genomics, functional genomics, structural genomics, and proteomics. Episode link: https://basebybase.com/episodes/culture-independent-metapangenomics-reveals-gut-genome-links-to-child-growth QC:This episode was checked against the original article PDF and publication metadata for the episode release published on 2025-09-10. QC Scope:- article metadata and core scientific claims from the narration- excludes analogies, intro/outro, and music- transcript coverage: Audited sections cover long-read versus short-read performance, generation of complete MAGs (cMAGs) and circular genomes, longitudinal associations between genome dynamics and LAZ, pangenome and gene-level associations with growth and breastfeeding, prophage integration findings, environmental/geographic influences on- transcript topics: Global malnutrition and LAZ definitions; Limitations of short-read sequencing for MAG recovery; Long-read metagenomics in Malawi cohort (PacBio and ONT); Generation of complete MAGs (cMAGs) and circular genomes; Longitudinal genome instability and LAZ decline; Pangenome analyses and gene-level associations with linear growth and breastfeeding (arnC, Prevotella, Megasphaera, Faecalibacterium, etc.) QC Summary:- factual score: 10/10- metadata score: 10/10

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