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Reduced Itraconazole Concentration and Durations Are Successful in Treating Batrachochytrium dendrobatidis Infection in Amphibians
Published on: March 14, 2014
Ecophysiological Suitability of Batrachochytrium dendrobatidis in Mexico
Aldo Gómez-Benitez1,2, Erika Adriana Reyes-Velázquez3, Karla Pelz-Serrano4
1Departamento de Ciencias Ambientales, División de Ciencias Biológicas y de La Salud, Universidad Autónoma Metropolitana Unidad Lerma, Avenida de Las Garzas #10 El Panteón, C.P. 52005, Lerma de Villada Estado de México, Mexico. gobeal940814@gmail.com.
Abstract:
Batrachochytrium dendrobatidis (Bd) is a fungal pathogen responsible for amphibian population declines worldwide. In Mexico, understanding the potential distribution of Bd is crucial for conservation. Here, we developed an ecophysiological suitability index that integrates five key physiological parameters related to temperature. The environmental variables from WorldClim v2.1 were used to derive spatial representations of Bd's thermal responses. A multicriteria evaluation combined these parameters into an ecophysiological suitability index. This index was projected to 2050 and 2070 under two contrasting climate change scenarios. We also analyzed the overlap between Bd's suitability, natural protected areas (NPAs), and endemic amphibian geographic distributions to assess conservation implications. Our results indicate that Bd suitability is highest in the mountainous regions of central Mexico and declines significantly in coastal and lowland areas. By 2050 and 2070, both climate change scenarios predict reduced suitability across most of Mexico. Thirty-five percent of federal NPAs and 53% of state NPAs had high suitability for Bd. Endemic amphibians inhabiting mountains face greater suitability for Bd in their habitats. Our findings highlight the utility of mechanistic models for predicting pathogen distributions under environmental constraints. This approach provides actionable insights for prioritizing conservation efforts, including habitat management and amphibian population monitoring.
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