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Life-Stage Transitions Drive Distinct Gut Viral Communities in Dairy Cattle

Cook, R.; Blanchard, A. M.; Marsh, C.; Ponsero, A. J.; Reynolds, J.; Adriaenssens, E. M.; Hudson, C.; Hobman, J.; Stekel, D. J.; Jones, M. A.; Millard, A. D.

2025-05-24 microbiology
10.1101/2025.05.24.655612 bioRxiv
Show abstract

Ruminant gut microbial communities profoundly influence host health and environmental impacts, yet their viral components remain poorly characterised across developmental transitions. Here, we analysed the dairy cow gut virome across four life stages--calf, heifer, dry adult, and lactating adult. Using hybrid sequencing, we assembled 30,321 viral operational taxonomic units, including 1,338 complete genomes representing mostly novel lineages. Virome composition shifted dramatically with life stage, transitioning from low-diversity, temperate-dominated communities in calves to high-diversity, lytic-dominated communities in adults. Virome transitions paralleled but showed distinct dynamics from bacterial community development, with viral and bacterial diversity negatively correlated during drying-off. Dry cows exhibited elevated viral loads relative to their bacterial hosts. We identified 26 viral sequences targeting the methanogen Methanobrevibacter, absent in calves but present in adults. These findings reveal the dynamic nature of ruminant gut viral communities and highlight phages potential regulatory role during critical life transitions.

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