Environment and host species shape the skin microbiome of captive neotropical bats

Author:

Lemieux-Labonté Virginie1,Tromas Nicolas1,Shapiro B. Jesse1,Lapointe François-Joseph1

Affiliation:

1. Département de Sciences Biologiques, Université de Montréal, Montréal, Canada

Abstract

BackgroundA wide range of microorganisms inhabit animal skin. This microbial community (microbiome) plays an important role in host defense against pathogens and disease. Bats (Chiroptera: Mammalia) are an ecologically and evolutionarily diversified group with a relatively unexplored skin microbiome. The bat skin microbiome could play a role in disease resistance, for example, to white nose syndrome (WNS), an infection which has been devastating North American bat populations. However, fundamental knowledge of the bat skin microbiome is needed before understanding its role in health and disease resistance. Captive neotropical frugivorous batsArtibeus jamaicensisandCarollia perspicillataprovide a simple controlled system in which to characterize the factors shaping the bat microbiome. Here, we aimed to determine the relative importance of habitat and host species on the bat skin microbiome.MethodsWe performed high-throughput 16S rRNA gene sequencing of the skin microbiome of two different bat species living in captivity in two different habitats. In the first habitat,A. jamaicensisandC. perspicillatalived together, while the second habitat contained onlyA. jamaicensis.ResultsWe found that both habitat and host species shape the composition and diversity of the skin microbiome, with habitat having the strongest influence. CohabitatingA. jamaicensisandC. perspicillatashared more similar skin microbiomes than members of the same species (A. jamaicensis) across two habitats.DiscussionThese results suggest that in captivity, the skin microbial community is homogenised by the shared environments and individual proximities of bats living together in the same habitat, at the expense of the innate host species factors. The predominant influence of habitat suggests that environmental microorganisms or pathogens might colonize bat skin. We also propose that bat populations could differ in pathogen susceptibility depending on their immediate environment and habitat.

Funder

NSERC discovery grants

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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