Gut microbiota strain richness is species specific and affects engraftment
2024/11/27 by Alice Chen-Liaw, Varun Aggarwala, Ilaria Mogno +26 · 2 voices · 32 citations
Biochemistry, Genetics and Molecular Biology · Medicine · #Gut microbiota and health #Clostridium difficile and Clostridium perfringens research #Gastrointestinal motility and disorders
paper · doi:10.1038/s41586-024-08242-x
Cited by
- Harnessing gut microbial communities to unravel microbiome functions
- How the social lives of bacteria affect their pangenome
- Baby-to-baby strain transmission shapes the developing gut microbiome
- Strain-level translocation and enrichment dynamics of oral bacteria in the lower gastrointestinal tract of stunted children
- Strain-level translocation and enrichment mechanisms of oral bacteria in the lower gastrointestinal tract of stunted children
- High-resolution metagenome assembly for modern long reads with myloasm
- Metabolic ecology of microbiomes: Nutrient competition, host benefits, and community engineering
- The Interplay Between Gut Microbiota, Adipose Tissue, and Migraine: A Narrative Review. [europepmc]
- Development of live biotherapeutic products: a position statement of Asia-Pacific Microbiota Consortium. [europepmc]
- Microbiota in inflammatory bowel disease: mechanisms of disease and therapeutic opportunities. [europepmc]
- Fecal microbiota transplantation: application scenarios, efficacy prediction, and factors impacting donor-recipient interplay. [europepmc]
- Detecting microbial engraftment after FMT using placebo sequencing and culture enriched metagenomics to sort signals from noise. [europepmc]
- Metagenomic source tracking after microbiota transplant therapy. [europepmc]
- Metabolic ecology of microbiomes: Nutrient competition, host benefits, and community engineering. [europepmc]
- Straining to define a healthy microbiome. [europepmc]
- Intraspecies associations from strain-rich metagenome samples. [europepmc]
- Holdemanella biformis augments washed microbiota transplantation for the treatment of radiation enteritis. [europepmc]
- Bacterial taxonomic and functional changes following oral lyophilized donor fecal microbiota transplantation in patients with ulcerative colitis. [europepmc]
- Multi-cohort metagenomics reveals strain functional heterogeneity and demonstrates fecal microbial load correction improves colorectal cancer diagnostic models. [europepmc]
- Long-read metagenomics for strain tracking after faecal microbiota transplant. [europepmc]
- Cohort-specific determinants of donor strain engraftment following multi-donor faecal microbiota transplantation in two randomised clinical trials. [europepmc]
- Recipients' native bacteria determine the outcome of FMT treatment in inflammatory bowel disease. [europepmc]
- Baby-to-baby strain transmission shapes the developing gut microbiome. [europepmc]
- Gut microbiota and metabolic disease risk in youth. [europepmc]
- Antibiotic consumption of inpatients with inflammatory bowel disease during 2015-2024 and future prediction: Evidence from a general hospital. [europepmc]
- The gut as a central hub for multi-organ crosstalk in aging. [europepmc]
- Metagenome-assembled genomes from a population-based cohort uncover novel gut species and within-species diversity, revealing prevalent disease associations. [europepmc]
- High-resolution metagenome assembly for modern long reads with myloasm. [europepmc]
- Microbes first into the life rafts: preserving microbiomes to secure health in degrading ecosystems. [europepmc]
- Dynamic change patterns of the human gut microbiota-fluctuation, loss-acquisition, and turnover-and their underlying causes. [europepmc]
- Strain transmission links human microbiomes along the oral-gut axis and across cohabiting individuals. [europepmc]
- Assessing live microbial therapeutic transmission. [europepmc]
Discussions