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Biology subjects

Ansil, B. R.

Publications and source records attributed to Ansil, B. R..

2 recordsLinked to original sources

Identification of distinct rodent-associated adenovirus lineages from a mixed-use landscape in the Western Ghats biodiversity hotspot

Shifts in land-use patterns and increased human-livestock-wildlife interactions have generated numerous possibilities for pathogen spillover. This demands increased efforts of pathogen surveillance in wildlife, especially in changing landscapes with high biodiversity. We investigated adenovirus diversity in small mammals, an understudied host taxon, from a forest-plantation mosaic in the Western Ghats biodiversity hotspot. Using PCR-based screening followed by Sanger sequencing and phylogenetic analyses, we attempted to detect and characterize adenovirus diversity in seven species of small mammals. We observed high prevalence (up to 38.8%) and identified five lineages of adenoviruses with unique mutations in the endemic and dominant small mammal species, Rattus satarae. These lineages significantly differed from other known Murine adenoviruses (p-distance > 25%), indicating the likelihood of novel adenovirus diversity in this endemic small mammal. Collectively, our results highlight the potential for unexplored diversity of DNA viruses like adenovirus in poorly explored host taxa inhabiting human-used landscapes and its zoonotic implications.

evolutionary biology↗

Host-pathogen-vector continuum in a changing landscape: Drivers of Bartonella prevalence and evidence of historic spillover in a tropical multi-host community

Small mammals and their ectoparasites present a unique system to investigate the eco-epidemiology of multi-host vector-borne pathogens and identify specific bacterial spillover determinants. We applied ecological and evolutionary analyses in a rainforest-human-use mosaic to investigate Bartonella spp. across small mammal and ectoparasite communities. We observed substantial overlap among small mammal communities in different habitat types, predominantly driven by habitat generalists. Most ectoparasites were generalists, infecting multiple hosts. We observed high Bartonella prevalence at both study sites -a forest-plantation mosaic (47.4%) and a protected area (28.8%). Seven of the ten ectoparasite species sampled were also positive for Bartonella, following prevalence trends in their hosts. A generalised linear model revealed an independent association between aggregated ectoparasite load in hosts and Bartonella prevalence, implicating ectoparasites in transmission. Bartonella lineages from small mammals were host-specific, while ectoparasites carried Bartonella associated with other small mammal hosts, indicating the potential for cross-species transmission. Phylogenetic ancestral trait reconstruction of Bartonella haplotypes suggest historic spillover events in the small mammal community, validating the potential for contemporary spillover events. These results highlight the necessity to disentangle the complex relationship between hosts, ectoparasites, and pathogens to understand the zoonotic implications of undetected spillover events in such multi-host communities.

ecology↗