Run to the Caves: Frog Refuges From Harsh Environments

ABSTRACT The use of caves by primarily nontroglobiont organisms can be critical when the conditions of surrounding epigean habitats deteriorate as a result of synergic effects of climate changes and degradation of native vegetation cover. Under scenarios of unbalanced temperatures, high solar incidence, low humidity and reduced shelter availability in the external landscapes, caves may become attractive refuges, particularly for desiccation‐sensitive animals such as the amphibians. We investigated the role of 96 iron caves in the southeastern Amazon as shelters for frogs, testing the hypotheses that species abundance in caves is higher during the dry season than the rainy season; species abundance during the dry season depends on interactions between resource availability within caves and natural and anthropogenic landscape features; and the relative dominance of turnover versus nestedness components of the beta‐diversity shifts seasonally in response to climatic variation. We documented five frog species using caves, two of which were more abundant during the dry season. Overall, generalized linear models provided evidence supporting our hypotheses and revealed that cave use is highly species‐specific. Therefore, the biology of species should be considered to understand the structure of frog assemblages within caves. Our findings also indicate that frogs act as trogloxenes, using caves opportunistically when they are available and when epigean habitats become unfavorable rather than exclusively relying on caves for completing their life cycles.

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Publication Details

Journal
Biotropica
Published
2026-09-29
DOI
https://doi.org/10.1111/btp.70266
Primary Topic
Amphibian and Reptile Biology
Type
article
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article

Run to the Caves: Frog Refuges From Harsh Environments

Leonardo Carreira Trevelin, Carlos Eduardo de Araújo Batista, Gilmax Gonçalves Ferreira, Rafael de Fraga et al.
Biotropica
Amphibian and Reptile Biology
article

Run to the Caves: Frog Refuges From Harsh Environments

Leonardo Carreira Trevelin, Carlos Eduardo de Araújo Batista, Gilmax Gonçalves Ferreira, Rafael de Fraga, Valéria da Cunha Tavares, Xavier Prous, Cássia Teixeira
article en

Abstract

ABSTRACT The use of caves by primarily nontroglobiont organisms can be critical when the conditions of surrounding epigean habitats deteriorate as a result of synergic effects of climate changes and degradation of native vegetation cover. Under scenarios of unbalanced temperatures, high solar incidence, low humidity and reduced shelter availability in the external landscapes, caves may become attractive refuges, particularly for desiccation‐sensitive animals such as the amphibians. We investigated the role of 96 iron caves in the southeastern Amazon as shelters for frogs, testing the hypotheses that species abundance in caves is higher during the dry season than the rainy season; species abundance during the dry season depends on interactions between resource availability within caves and natural and anthropogenic landscape features; and the relative dominance of turnover versus nestedness components of the beta‐diversity shifts seasonally in response to climatic variation. We documented five frog species using caves, two of which were more abundant during the dry season. Overall, generalized linear models provided evidence supporting our hypotheses and revealed that cave use is highly species‐specific. Therefore, the biology of species should be considered to understand the structure of frog assemblages within caves. Our findings also indicate that frogs act as trogloxenes, using caves opportunistically when they are available and when epigean habitats become unfavorable rather than exclusively relying on caves for completing their life cycles.

BiotropicaVol. 58(6)
Vale (Brazil) (BR), Vale Technological Institute (BR)
Openalex Percentile: Top 15%
Amphibian and Reptile Biology
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Run to the Caves: Frog Refuges From Harsh Environments — Leonardo Carreira Trevelin, Carlos Eduardo de Araújo Batista, et al. · Biotropica (2026) | TGRS Research Map | TGRS