Artículo
Host ecology moderates the specialization of Neotropical bat-fly interaction networks
Saldaña Vázquez, Romeo A.; Sandoval Ruiz, César A.; Veloz Maldonado, Orsson S.; Durán de la Ossa, Adrián Alonso
; Ramírez Martínez, María Magdalena
Fecha de publicación:
09/2019
Editorial:
Springer
Revista:
Parasitology Research
ISSN:
0932-0113
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The transmission of diseases through parasites is a key mechanism in the regulation of plant and animal populations in ecosystems. Therefore, it is necessary to investigate the relative effect of the variables that can shape the specificity of host-parasite interactions. Previous studies have found that specialization of antagonistic interactions between fly ectoparasites and bats changes according to forest type, host richness, and roosting ecology of bats. In this study, we tested these hypotheses using data from 48 bat communities. In general, our results support previous findings that bat-fly interactions are specialized, resulting in lower niche overlap among bat flies species. In addition, we found that the specificity of bat-fly interactions is lower in tropical mountain forests and is positively related with the richness of bat host species of each study site. Finally, there was a higher bat flies niche overlap in smaller bat-fly interaction networks recorded in bat roosts in caves. We conclude that the roosting ecology of bats could be a key factor to understand the mechanisms related to the horizontal transmission of ectoparasitic flies among bats.
Palabras clave:
CHIROPTERA
,
ECOLOGICAL NETWORKS
,
ECOREGIONS
,
NEOTROPICS
,
STREBLIDAE
Archivos asociados
Licencia
Identificadores
Colecciones
Articulos(INECOA)
Articulos de INSTITUTO DE ECORREGIONES ANDINAS
Articulos de INSTITUTO DE ECORREGIONES ANDINAS
Citación
Saldaña Vázquez, Romeo A.; Sandoval Ruiz, César A.; Veloz Maldonado, Orsson S.; Durán de la Ossa, Adrián Alonso; Ramírez Martínez, María Magdalena; Host ecology moderates the specialization of Neotropical bat-fly interaction networks; Springer; Parasitology Research; 118; 10; 9-2019; 2919-2924
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