<!— Auto-created stub from Rule 13 scope discovery. 5 source pages mention this taxon. Awaiting content expansion. —>
Vibrio
References (8)
- Liu Z, Zhou X, Kuang L et al. (2025). Novel Insights into Immune-Gut Microbiota Interactions in Colorectal Cancer: A Mendelian Randomization Study. Infectious Agents and Cancer. doi:10.1186/s13027-025-00653-3
- Srivastava J, Chandra H, Singh N et al. (2016). Understanding the Development of Environmental Resistance Among Microbes: A Review. Clean - Soil, Air, Water. doi:10.1002/clen.201300975
- Lucia N. Peralta-Marzal, David Rojas-Velazquez, Douwe Rigters et al. (2024). Peralta-Marzal 2024 — A Robust Microbiome Signature for Autism Spectrum Disorder Across Different Studies Using Machine Learning. Scientific Reports. doi:10.1038/s41598-023-50601-7
- Marius Troeseid, Susanne Dam Nielsen, Ivan Vujkovic-Cvijin (2024). Gut microbiome and cardiometabolic comorbidities in people living with HIV. Microbiome. doi:10.1186/s40168-024-01815-y
- Pei XQ, Wang WH, Gao YH et al. (2024). Role of immune cells in mediating the effect of gut microbiota on Hashimoto's thyroiditis: a 2-sample Mendelian randomization study. Frontiers in Microbiology. doi:10.3389/fmicb.2024.1463394
- Yan F, Xia L, Xu L et al. (2022). A Comparative Study to Determine the Association of Gut Microbiome with Schizophrenia in Zhejiang, China. BMC Psychiatry. doi:10.1186/s12888-022-04328-w
- Paul M. Ryan, Lis E. E. London, Trent C. Bjorndahl et al. (2017). Microbiome and metabolome modifying effects of several cardiovascular disease interventions in apo-E-/- mice. Microbiome. doi:10.1186/s40168-017-0246-x
- Appunni S, Rubens M, Ramamoorthy V et al. (2021). Emerging Evidence on the Effects of Dietary Factors on the Gut Microbiome in Colorectal Cancer. Frontiers in Nutrition. doi:10.3389/fnut.2021.718389