Abstract / Summary
Wildlife habituation across the globe poses threats to human and animal safety and alters regular ecological function, yet the wildlife, environmental, and public health ramifications are poorly characterized. The gut microbiome is a valuable proxy for these factors as it influences host health, is affected by anthropogenic exposure, and may contribute to the environmental spread of virulence factors. Despite their importance, wildlife gut microbiomes are largely uncharacterized, both in composition and function. We characterized American black bear (Ursus americanus) gut microbiomes across a spectrum of lifestyles including wild (conflict-free), habituated (conflict-prone), and captive individuals. 16S rRNA gene sequencing was used for compositional analyses and whole genome short-read sequencing (WGS) was performed on a subset of bears to investigate microbiome function and virulence factors. We found that habituated, wild, and captive bears have unique gut microbiome compositions that are indicative of their respective lifestyles. In particular, captive bears are enriched in carnivory-associated taxa and habituated bears in inflammatory taxa. WGS reveals wild bears have increased fungi and soil-associated bacteria, as well as higher proportions of unclassified reads. Habituated bears have significantly increased levels of antimicrobial resistance genes, and captive bears are enriched in enterotoxins. Our results demonstrate previously undescribed wildlife physiological and One Health consequences of habituation.