Microbiome Dynamics During Translocation of the Critically Endangered Frog Craugastor ranoides

ABSTRACT Amphibian populations are declining, and species are going extinct due to habitat loss, climate change, and emerging infectious disease, prompting the increasing use of translocations as a conservation tool. Skin‐associated bacterial communities play a key role in amphibian health, particularly in protecting hosts from pathogenic infection. However, to date we know relatively little about the impact of translocation on the dynamics of skin‐associated bacteria, or the consequences of translocation‐mediated disturbance of the microbiome for amphibian health. We investigated the skin microbiome of the critically endangered frog Craugastor ranoides , now restricted to a fraction of its historical range in Costa Rica. We first conducted a multi‐population survey to characterise among‐population variation in skin bacterial communities. We then translocated individuals to a new site, using radio tracking to monitor them over time and assess individual‐level changes in body mass, microbiome composition, and predicted microbial function. We found limited among‐population variation in skin microbiome composition across three different populations of C. ranoides . Response of the microbiome to translocation was highly individual‐specific; some frogs demonstrated relatively stable community richness and composition, whilst others exhibited marked turnover in bacterial membership and predicted function. Body mass showed similar dynamics, but several of the recaptured frogs had gained mass after several days in the translocation site. Our findings highlight the importance of considering microbiome dynamics in threatened species translocations to optimise individual health. This includes considering whether individuals should be prioritised for translocation based on their initial microbiome composition, and understanding how shifts in microbiome post‐translocation may alter the overall success of translocation efforts. These insights extend beyond amphibians, offering a broader framework for integrating long‐term monitoring of host microbiomes and health into conservation efforts.

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Publication Details

Journal
Animal Conservation
Published
2026-09-22
DOI
https://doi.org/10.1111/acv.70103
Primary Topic
Amphibian and Reptile Biology
Type
article
Field-Weighted Citation Impact
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article

Microbiome Dynamics During Translocation of the Critically Endangered Frog Craugastor ranoides

Héctor Zumbado‐Ulate, Robert Puschendorf, Jon Bielby, María Marta Chavarría et al.
Animal Conservation
Amphibian and Reptile Biology
article

Microbiome Dynamics During Translocation of the Critically Endangered Frog Craugastor ranoides

Héctor Zumbado‐Ulate, Robert Puschendorf, Jon Bielby, María Marta Chavarría, Alexander D. M. Wilson, Xavier A. Harrison, Kirsty J. Marsh, Alexandra C. North, Victoria E. P. Wakeham, Roberto Fernández, Katherine Herborn, Gilbert Alvarado
article en

Abstract

ABSTRACT Amphibian populations are declining, and species are going extinct due to habitat loss, climate change, and emerging infectious disease, prompting the increasing use of translocations as a conservation tool. Skin‐associated bacterial communities play a key role in amphibian health, particularly in protecting hosts from pathogenic infection. However, to date we know relatively little about the impact of translocation on the dynamics of skin‐associated bacteria, or the consequences of translocation‐mediated disturbance of the microbiome for amphibian health. We investigated the skin microbiome of the critically endangered frog Craugastor ranoides , now restricted to a fraction of its historical range in Costa Rica. We first conducted a multi‐population survey to characterise among‐population variation in skin bacterial communities. We then translocated individuals to a new site, using radio tracking to monitor them over time and assess individual‐level changes in body mass, microbiome composition, and predicted microbial function. We found limited among‐population variation in skin microbiome composition across three different populations of C. ranoides . Response of the microbiome to translocation was highly individual‐specific; some frogs demonstrated relatively stable community richness and composition, whilst others exhibited marked turnover in bacterial membership and predicted function. Body mass showed similar dynamics, but several of the recaptured frogs had gained mass after several days in the translocation site. Our findings highlight the importance of considering microbiome dynamics in threatened species translocations to optimise individual health. This includes considering whether individuals should be prioritised for translocation based on their initial microbiome composition, and understanding how shifts in microbiome post‐translocation may alter the overall success of translocation efforts. These insights extend beyond amphibians, offering a broader framework for integrating long‐term monitoring of host microbiomes and health into conservation efforts.

Animal Conservation
Universidad Nacional (CR), University of Exeter (GB), Universidad de Costa Rica (CR), Guanacaste Conservation Area (CR), Liverpool John Moores University (GB), University of Plymouth (GB)
Life in Land
Openalex Percentile: Top 14%
Amphibian and Reptile Biology
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