Comparative assessment of Texas horned lizard (Phrynosoma cornutum) gut microbiome diversity and composition throughout transition from captivity to wild
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Abstract
Microbiomes play a key role in the health of animal hosts. To improve
conservation translocation programs like headstarting, it is necessary to
consider how the structure of these programs impact the host-associated
microbiome. Bringing animals into captivity introduces novel diets and
environments; however, the extent to which these factors contribute to the
structure of the host’s gut microbiome remains poorly understood. Additionally,
it is unclear if periods of captivity leave a lasting signature on the host-associated
gut microbiome, which could impact individual health and fitness in the longterm.
In this study, we repeatedly sampled the gut microbiome of a cohort of
headstart Texas horned lizards (Phrynosoma cornutum) throughout their
transition from captivity to the wild. We also collected samples of extrinsic
microbial communities present in their captive and wild diet and environment.
Finally, we sampled the gut microbiome of wild resident lizards to serve as a
baseline comparison. Using 16S rRNA microbial inventories, we examined
differences in microbial community composition and diversity between prerelease
headstart, post-release headstart, and resident lizards of the wild
population. Additionally, we assessed the contribution of environmental and
dietary microbial communities to the assembly of P. cornutum gut microbiomes
in captivity and the wild. Our results suggest captive P. cornutum harbor gut
microbiomes that are distinct from their wild counterparts. However, within twomonths
post-release, the headstart gut microbiome restructures to be
indistinguishable from the wild resident microbiome. Microbiomes associated with the captive diet and environment are distinct in beta diversity, but not alpha
diversity, from those in the wild. Our results provide important insights into hostassociated
microbiome dynamics associated with transition from captivity to the
wild and can be used to inform conservation translocation practices.