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June 5, 2026Scientific Reports0 citationsOpen Access

Cattle-induced homogenization of microbial communities weakens the influence of geochemical gradients in small water bodies

ZZZ. A. ZahirUniversity of TorontoMMMichael MensahUniversity of ReginaSFStephanie P. FlamanUniversity of Regina

Key Points

  • This research investigates how cattle disturbances influence microbial community structures in freshwater ecosystems.
  • Used 16S rRNA gene sequencing to analyze microbial communities.
  • Conducted water geochemistry analyses to assess dissolved organic carbon and sulfate levels.
  • Examined microbial community variations between livestock-disturbed and undisturbed ponds.
  • Livestock disturbances decreased the relative abundance of Thiobacillus, impacting sulfur cycling.
  • Geochemical influences on microbial communities were weakened due to increased spatial heterogeneity in disturbed ponds.
  • Biodiversity decreased in ponds with cattle activities, leading to greater community homogenization.

Abstract

Natural ponds and constructed reservoirs (dugouts) provide essential water for agriculture, yet the effects of livestock disturbances on the freshwater microbial ecosystems remain underexplored. In this study, 16S rRNA gene sequencing was combined with water geochemistry analyses to examine the relative influence of livestock and geochemical variables on microbial communities in the Prairie Pothole Region (PPR) of the North American Great Plains. In undisturbed ponds, geochemical factors such as dissolved organic carbon (DOC) and sulfate (SO 4 2− ) create strong selective pressures, creating distinct microbial communities specialized in carbon and sulfur cycling, leading to niche differentiation and the dominance of specific bacterial taxa. In contrast, livestock-induced disturbances like manure deposition and physical disruption increase within-pond spatial heterogeneity, weakening local geochemical control, while simultaneously reducing biodiversity and homogenizing communities across ponds despite underlying geochemical differences. One example of cattle-induced disturbances was their impact on relative abundances of multiple microorganisms such as Thiobacillus. Thiobacillus is a major contributor to sulfur cycling, converting hydrogen sulfide (H 2 S) into SO 4 2− under aerobic conditions and contributing to sulfur sequestration by incorporating SO 4 2− into biomass through assimilatory SO 4 2− reduction. In ponds with cattle activities Thiobacillus relative abundance was decreased and the impact of SO 4 2− and DOC was less prominent. Overall, this study showed that livestock disturbances disrupt local microbial community assembly and weaken the influence of geochemical selection in structuring pond-scale microbial diversity.

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Cite This Study

Zahir et al. (2026) studied this question.

synapsesocial.com/papers/6a22672f763171746d545f65https://doi.org/10.1038/s41598-026-55862-6
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