Pangenome analysis reveals both niche-specific “specialists” and microbial “side hustlers” in colorectal cancer microbiomes
The gut microbiome is reproducibly implicated in colorectal cancer (CRC), yet the inter-study and interpersonal variability of certain species associations suggests that CRC microbiomes may be defined by convergent functional states achievable by phylogenetically diverse organisms. Distinguishing lineage-conserved “specialists” from taxonomically diverse “side hustlers”—organisms whose shared functional traits are dispersed across phylogenetically distant lineages—offers complementary translational insights: “specialists” are primary candidates for lineage-targeted biomarkers and inhibitors, while the shared functional architecture of “side hustlers” may reveal high-priority potential therapeutic targets robust to inter-individual variability. Here, we quantify phylogenetic coherence (monophyly) of 3,711 co-associated gene bins (CAGs) across 13 bacterial species and evaluate CRC associations across three independent cohorts, identifying hundreds of CAGs associated with CRC or health across a spectrum of monophyly scores, indicating that both states harbor a mixture of “specialist” and “side hustler” gene content. Strikingly, in Faecalibacterium prausnitzii—a species with a complex relationship to CRC—health-associated CAGs exhibited significantly higher monophyly scores than CRC-associated CAGs, consistent with health-linked traits being lineage-conserved while CRC-linked traits behave as polyphyletically distributed, potentially mobile “side hustlers.” Across multiple CRC-associated species, we observe functional convergence in gene bins encoding Type IV secretion systems (T4SS), TonB-dependent receptors, and RagB/SusD nutrient uptake proteins. Fusobacterium animalis strains encode T4SS elements across bins with variable phylogenetic origins, representing simultaneous “specialist” and “side hustler” strategies within a single species. Pairwise interaction analysis further reveals synergistic interspecies associations, including co-occurrence of F. animalis and Clostridium scindens gene bins associated with a CRC probability of > 90%, suggesting that microbial “side hustlers” may amplify oncogenic risk through ecological interactions invisible to species-level analysis. These findings provide proof-of-principle that an ecological and evolutionary lens on the CRC microbiome can identify shared functional vulnerabilities and lineage-specific targets for microbiome-based cancer prevention.
Authors
- Neelendu Dey (ORCID: https://orcid.org/0000-0001-8825-5689)
- Justin Lee (ORCID: https://orcid.org/0000-0001-8269-7494)
- Samuel Minot
Institutions
- Creighton University (US)
- Cape Town HVTN Immunology Laboratory / Hutchinson Centre Research Institute of South Africa (ZA)
- University of Washington (US)
- Fred Hutch Cancer Center (US)
- Biota Pharmaceuticals (United States) (US)
Publication Details
- Journal
- Gut Microbes
- Published
- 2026-09-15
- DOI
- https://doi.org/10.1080/19490976.2026.2728331
- Primary Topic
- Gut microbiota and health
- Type
- article
- Field-Weighted Citation Impact
- 0.00