TY - JOUR
T1 - Mapping the canine gut microbiome
T2 - insights from the Dog Aging Project
AU - DAP Consortium
AU - Bamberger, Tal
AU - Muller, Efrat
AU - Algavi, Yadid M.
AU - Greenier, Ashlee
AU - Adjangba, Christine
AU - Slikas, Elizabeth
AU - Brassington, Layla
AU - Mariner, Blaise
AU - McCoy, Brianah
AU - Harrison, Benjamin R.
AU - Partida-Aguilar, Maria
AU - Marye, Abbey
AU - Harris, Adam
AU - Rout, Emily
AU - Tolbert, M. Katherine
AU - Snyder-Mackler, Noah
AU - Shrager, Sandi
AU - Schwartz, Stephen M.
AU - Ruple, Audrey
AU - Reed, May J.
AU - Promislow, Daniel E.L.
AU - Olby, Natasha J.
AU - McGrath, Stephanie
AU - MacLean, Evan L.
AU - Ma, Jing
AU - Kerr, Kathleen F.
AU - Karlsson, Elinor K.
AU - Kaeberlein, Matt
AU - Jonlin, Erica C.
AU - Hoffman, Jessica M.
AU - Fajt, Virginia R.
AU - Dunbar, Matthew D.
AU - Creevy, Kate E.
AU - Coleman, Amanda E.
AU - Castelhano, Marta G.
AU - Borenstein, Elhanan
AU - Anderson, Rozalyn M.
AU - Akey, Joshua M.
AU - Avery, Anne
AU - Promislow, Daniel E.L.
AU - Borenstein, Elhanan
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/12/1
Y1 - 2026/12/1
N2 - Companion dogs (Canis lupus familiaris) offer a unique model for studying the gut microbiome and its relation to aging due to their cohabitation with humans, sharing similar environments, diets, and healthcare practices. Here, we present the Dog Aging Project (DAP) Precision cohort, a large population-wide study of the canine gut microbiome. This cohort encompasses over 900 dogs of diverse breeds, environments, and demographics living across the United States. Coupling fecal shotgun metagenomic sequencing with phenotypic and environmental surveys and clinical lab tests, we explore the intricate relationships between microbiome composition, aging, and key factors such as health and living conditions. Our analyses identify multiple factors associated with microbiome composition, including dietary preferences such as commercial versus home cooked nutrition, and behaviors such as coprophagy (feces eating). In addition, we find age-associated gradual shifts in microbiome composition, supporting the development of a metagenomics-based population-level model for canine age prediction based on microbial signatures. We further examined which age-associated microbial patterns observed in humans are recapitulated in dogs by comparing our cohort with the Lifelines-DEEP cohort. Overall, these findings offer insights into the role the gut microbiome plays in our four-legged companions, with potential implications for veterinary medicine and translational aging research.
AB - Companion dogs (Canis lupus familiaris) offer a unique model for studying the gut microbiome and its relation to aging due to their cohabitation with humans, sharing similar environments, diets, and healthcare practices. Here, we present the Dog Aging Project (DAP) Precision cohort, a large population-wide study of the canine gut microbiome. This cohort encompasses over 900 dogs of diverse breeds, environments, and demographics living across the United States. Coupling fecal shotgun metagenomic sequencing with phenotypic and environmental surveys and clinical lab tests, we explore the intricate relationships between microbiome composition, aging, and key factors such as health and living conditions. Our analyses identify multiple factors associated with microbiome composition, including dietary preferences such as commercial versus home cooked nutrition, and behaviors such as coprophagy (feces eating). In addition, we find age-associated gradual shifts in microbiome composition, supporting the development of a metagenomics-based population-level model for canine age prediction based on microbial signatures. We further examined which age-associated microbial patterns observed in humans are recapitulated in dogs by comparing our cohort with the Lifelines-DEEP cohort. Overall, these findings offer insights into the role the gut microbiome plays in our four-legged companions, with potential implications for veterinary medicine and translational aging research.
UR - https://www.scopus.com/pages/publications/105045045153
U2 - 10.1038/s41467-026-73193-y
DO - 10.1038/s41467-026-73193-y
M3 - Article
C2 - 42156772
AN - SCOPUS:105045045153
SN - 2041-1723
VL - 17
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 6602
ER -