Ecological factors shaping ectoparasite communities on heteromyid rodents at Médanos de Samalayuca

Anaplasma phagocytophilum Pulex Rhipicephalus sanguineus Tick infestation
DOI: 10.1007/s00436-023-08098-6 Publication Date: 2024-01-06T01:05:57Z
ABSTRACT
Abstract Rodent ectoparasites are vectors to important pathogens for wildlife, domestic animals and even zoonosis. Nevertheless, distribution patterns of ectoparasites are not fully understood; habitat, season, and host-species are important predictors on distribution and prevalence. Heteromyids rodents are considered important reservoirs of diseases, given the presence of different ectoparasites and pathogens in them, they offer the opportunity to learn about the ecology of parasites. The aim of the present work was to survey ectoparasites associated to heteromyids rodents near to a National Protected Area in Chihuahua Mexico, south of the United States-Mexico border and asses the effect of ecological factors (season, vegetation type, host species, and host body condition) on parasite infestation. We sampled five different locations from January 2018 to July 2022; 845 heteromyid rodents were examined collecting 49 fleas and 33 ticks. Ectoparasites belonged to Siphonaptera and Ixodida orders, including three families Ixodidae (Riphicephalus sanguineus), Pulicidae (Pulex irritans), and Ctenophthalmidae (Meringins altipecten, M. dipodomys). Five species of host rodents were captured, Dipodomys merriami, D. ordii, Chaetodipus eremicus, C. hispidus and C. intermedius the last two species did not present any ectoparasites. Dipodomys merriami presented the highest flea and tick prevalence followed by D. ordii. We found parasitic partnerships between heteromyids according to the ecological factors. The infestation in C. eremicus is related to body condition, vegetation type, and sex; in D. merriami, it is related to vegetation type and season, while D. ordii did not present a clear pattern of infestation. Our results suggest that the infestation patterns of heteromyid rodents in desert habitats are species-dependent.
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