Project: PRJEB27928
United Kingdom, Cambridge

数据描述

Project: PRJEB27928

Association studies have linked microbiome alterations with many human diseases. However, they have not always reported consistent results, thereby necessitating cross-study comparisons. Here, a meta-analysis of eight geographically and technically diverse fecal shotgun metagenomic studies of colorectal cancer (CRC, n = 768), which was controlled for several confounders, identified a core set of 29 species significantly enriched in CRC metagenomes (false discovery rate (FDR) < 1 × 10-5). CRC signatures derived from single studies maintained their accuracy in other studies. By training on multiple studies, we improved detection accuracy and disease specificity for CRC. Functional analysis of CRC metagenomes revealed enriched protein and mucin catabolism genes and depleted carbohydrate degradation genes. Moreover, we inferred elevated production of secondary bile acids from CRC metagenomes, suggesting a metabolic link between cancer-associated gut microbes and a fat- and meat-rich diet. Through extensive validations, this meta-analysis firmly establishes globally generalizable, predictive taxonomic and functional microbiome CRC signatures as a basis for future diagnostics.

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相关论文

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Multi-kingdom microbiota analyses identify bacterial–fungal interactions and biomarkers of colorectal cancer across cohorts

Liu Ning-NingJiao NaTan Jing-CongWang ZiliangWu Dingfeng21
Nature Microbiology
2022
2022/1/27
Vol.7 No.2 p.238-250
Despite recent progress in our understanding of the association between the gut microbiome and colorectal cancer (CRC), multi-kingdom gut microbiome dysbiosis in CRC across cohorts is unexplored. We investigated four-kingdom microbiota alterations using CRC metagenomic datasets of 1,368 samples from...
Computational modelsMicrobiome
10.1038/S41564-021-01030-7
ISSN:2058-5276

Cross-domain metabolic interactions link Methanobrevibacter smithii to colorectal cancer microbial ecosystems

Rokhsareh MohammadzadehAlexander MahnertTamara ZurabishviliLisa WinkChristina Kumpitsch19
Nature Communications
2026
2026/2/20
Vol.17 No.1 p.29790
The human gut is colonized by trillions of microbes that influence the health of their human host. Whereas many bacterial species have now been linked to a variety of different diseases, the involvement of Archaea, an evolutionarily distinct group of microbes, in human disease remains elusive. By an...
ArchaeaMetagenomics
10.1038/S41467-026-69711-7
ISSN:2041-1723

Metagenomic analysis of colorectal cancer datasets identifies cross-cohort microbial diagnostic signatures and a link with choline degradation

Andrew Maltez ThomasPaolo ManghiFrancesco AsnicarEdoardo PasolliFederica Armanini39
Nature Medicine
2019
2019/4/1
Vol.25 No.4 p.667-678
Several studies have investigated links between the gut microbiome and colorectal cancer (CRC), but questions remain about the replicability of biomarkers across cohorts and populations. We performed a meta-analysis of five publicly available datasets and two new cohorts and validated the findings o...
Cancer genomicsColorectal cancerMicrobial communitiesMetagenomicsMicrobiome
10.1038/S41591-019-0405-7
ISSN:1078-8956

Obesity-driven microbial GABA depletion promotes metabolic rewiring and colorectal cancer progression

Wei GuoKaiyue SunXia WangMengmeng LiZheng Li21
Nature Communications
2026
2026/7/27
Vol.17 No.1 p.74040
Obesity is a major risk factor for colorectal cancer (CRC), yet the mechanisms linking obesity-associated gut dysbiosis to tumor progression remain unclear. Here, we show that a high-fat diet and fecal microbiota from patients with obesity-associated CRC deplete the GABA-producing commensal Bacteroi...
Colorectal cancerMechanisms of diseaseMicrobiology
10.1038/S41467-026-76079-1
ISSN:2041-1723

Meta-analysis of fecal metagenomes reveals global microbial signatures that are specific for colorectal cancer

Jakob WirbelPaul Theodor PylEce KartalKonrad ZychAlireza Kashani35
Nature Medicine
2019
2019/4/1
Vol.25 No.4 p.679-689
Association studies have linked microbiome alterations with many human diseases. However, they have not always reported consistent results, thereby necessitating cross-study comparisons. Here, a meta-analysis of eight geographically and technically diverse fecal shotgun metagenomic studies of colore...
Colorectal cancerComputational biology and bioinformaticsMicrobiome
10.1038/S41591-019-0406-6
ISSN:1078-8956

An expanded database and analytical toolkit for identifying bacterial virulence factors and their associations with chronic diseases

Wanting DongXinyue FanYaqiong GuoSiyi WangShulei Jia14
Nature Communications
2024
2024/9/15
Vol.15 No.1 p.1-16
Virulence factor genes (VFGs) play pivotal roles in bacterial infections and have been identified within the human gut microbiota. However, their involvement in chronic diseases remains poorly understood. Here, we establish an expanded VFG database (VFDB 2.0) consisting of 62,332 nonredundant orthol...
MicrobiomePredictive markers
10.1038/S41467-024-51864-Y
ISSN:2041-1723

A deep siamese neural network improves metagenome-assembled genomes in microbiome datasets across different environments

Pan ShaojunZhu ChengkaiZhao Xing-MingCoelho Luis Pedro
Nature Communications
2022
2022/4/28
Vol.13 No.1 p.1-12
Metagenomic binning is the step in building metagenome-assembled genomes (MAGs) when sequences predicted to originate from the same genome are automatically grouped together. The most widely-used methods for binning are reference-independent, operating de novo and enable the recovery of genomes from...
Machine learningMetagenomics
10.1038/S41467-022-29843-Y
ISSN:2041-1723