基因组
生物
微生物群
遗传学
自闭症谱系障碍
代谢组学
微生物种群生物学
结构变异
计算生物学
微生物代谢
遗传变异
基因组学
基因
基因组
自闭症
微生物遗传学
进化生物学
生物信息学
转录组
代谢物
微生物生态学
肠道微生物群
小桶
人体微生物群
作者
Wanning Chen,Xinjun Wang,Ruixin Zhu,Wenxing Gao,Liwen Tao,Rong Yang,Qing Wei,Yiming Zhang,Yujiao Gong,Hui Zhong,Linsheng Huang,Xinyue Zhu,Yuwei Yang,Linjuan Zhang,Lin Wan,Guang Yang,Yan Li,Na Jiao,Jifeng Wang,Huanlong Qin
标识
DOI:10.1016/j.xcrm.2025.102516
摘要
Emerging evidence links the gut microbiome to autism spectrum disorder (ASD), yet the role of microbial genomic variation remains underexplored. We generated a large-scale metagenomic and metabolomic dataset from over 1,100 children, integrating public datasets, to characterize ASD-associated microbial changes. We identified 35 species, 213 genes, 28 pathways, and 99 metabolites, alongside 1,369 single-nucleotide variants, 233 insertions/deletions, and 195 structural variants with differential abundance. Profiling of microbial genomic variation revealed 33 species and 196 enzymes lacking abundance differences, yet exhibiting significant sequence variation. Integrated analysis of microbial variants and metabolites uncovered 357 neurological associations, with mediation analysis showing that several metabolites link microbial variants to the ASD phenotype. Importantly, diagnostic models incorporating microbial variant and/or metabolite features achieved superior performance and generalizability. Our findings highlight microbial genomic variation as a critical, previously overlooked dimension of ASD-associated dysbiosis, offering valuable insights for diagnosis and mechanistic studies.
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