info:eu-repo/semantics/article
Age-specific mortality analysis of the dry forest kissing bug, Rhodnius neglectus
Fecha
2010-06Registro en:
Rabinovich, Jorge Eduardo; Nieves, Eliana Lorena; Chaves, Luis F.; Age-specific mortality analysis of the dry forest kissing bug, Rhodnius neglectus; Wiley Blackwell Publishing, Inc; Entomologia Experimentalis et Applicata; 135; 3; 6-2010; 252-262
0013-8703
CONICET Digital
CONICET
Autor
Rabinovich, Jorge Eduardo
Nieves, Eliana Lorena
Chaves, Luis F.
Resumen
Age-specific mortality patterns can be very different across insects with different life histories. Some holometabolous insects (like mosquitoes, fruit flies) show a pattern where mortality rate decelerates at older ages, whereas other holometabolous insects (bruchid beetles) and hemimetabolous insects (cotton stainers, milkweed bugs, and kissing bugs) show an age-specific mortality pattern that increases through all ages. Kissing bugs are strictly hematophagous and are vectors of Trypanosoma cruzi Chagas, the etiologic agent of Chagas disease. Here, we tested whether cohort data from the dry forest kissing bug, Rhodnius neglectus Lent (Hemiptera: Reduviidae), supports an increase of mortality rate that decelerates with age. We analyzed the age-specific mortality pattern of a cohort of 250 individuals of R. neglectus. We used a suite of seven models with different degrees of complexity, to model age-dependent forms of change in mortality rate increase in R. neglectus in the laboratory.We used the Akaike model selection criterion to choose between models that consider absence or presence of mortality deceleration. Five of the seven models (logistic, Gavrilovs, Gompertz, DeMoivre, and exponential) showed a statistically significant fit to the mortality rate. Weak late-age mortality deceleration in R. neglectus was supported by the best fit (logistic model), and this result is consistent with predictions of the disposable soma theory of senescence.
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