2024
Metagenomic analysis of the intestinal microbiome reveals the potential mechanism involved in Bacillus amyloliquefaciens in treating schistosomiasis japonica in mice
Chen H, Huang S, Zhao Y, Sun R, Wang J, Yao S, Huang J, Yu Z. Metagenomic analysis of the intestinal microbiome reveals the potential mechanism involved in Bacillus amyloliquefaciens in treating schistosomiasis japonica in mice. Microbiology Spectrum 2024, 12: e03735-23. PMID: 38441977, PMCID: PMC10986500, DOI: 10.1128/spectrum.03735-23.Peer-Reviewed Original ResearchConceptsTaxonomic compositionGut microbiomeIntestinal microbiomeFunctional genesKEGG OrthologyMetagenomic analysisIntestinal microbiotaRegulatory mechanismsFunction of gut microbiomeComposition of gut microbiotaAbundance of functional genesMetagenomic sequencingGene functionGut microbiotaPotential regulatory mechanismSpecies levelIntervention of probioticsBacillus amyloliquefaciensMicrobiomeGenesMicrobiotaHost immune responseProbiotic interventionMetabolic reactionsSchistosoma japonicum</i>
2023
Exploring the Plasticity of Diet on Gut Microbiota and Its Correlation with Gut Health
Yao S, Zhao Y, Chen H, Sun R, Chen L, Huang J, Yu Z, Chen S. Exploring the Plasticity of Diet on Gut Microbiota and Its Correlation with Gut Health. Nutrients 2023, 15: 3460. PMID: 37571397, PMCID: PMC10420685, DOI: 10.3390/nu15153460.Peer-Reviewed Original ResearchConceptsGut microbiotaGut healthComposition of gut microbiotaGut microbiota of miceProtecting gut healthRRNA gene sequencesMicrobiota of miceGut microbiota changesGene sequencesAlpha diversityHigh fiber dietMicrobiota changesPathogenic bacteriaMicrobiotaGutGenusHigh-protein dietSwitching dietsDietary impactExperimental timeframeBacteriaProbioticsHigh-protein diet groupSequenceAIN-93G diet