ArticleParasites & vectors2021
Higher temperatures reduce the number of Trypanosoma cruzi parasites in the vector Triatoma pallidipennis.
Article in Parasites & vectors, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Acute sublethal heat stress impairs blood feeding and trypanosome infection in the kissing bug, Rhodnius prolixus.Journal of medical entomology · 2026Article
- Blechomonas campbelli from Ctenocephalides felis: in vitro development, thermotolerance, and phylogenetic insights.Memorias do Instituto Oswaldo Cruz · 2026Article
- The impact of temperature on canine Chagas disease transmission risk: A modeling study.PLoS neglected tropical diseases · 2025Article
- Lectin Recognition Patterns in the Gut ofMicroorganisms · 2025Article
- Interaction ofMicroorganisms · 2024Review
- Severe Chagas disease in Ecuador: a countrywide geodemographic epidemiological analysis from 2011 to 2021.Frontiers in public health · 2023Article
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Authors and funding
6 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundRelatively little is known about how pathogens transmitted by vector insects are affected by changing temperatures analogous to those occurring in the present global warming scenario. One expectation is that, like their ectothermic vectors, an increase in temperature could reduce their fitness. Here, we have investigated the effect of high temperatures on the abundance of Trypanosoma cruzi parasites during infection in the vector Triatoma pallidipennis.
methodsWe exposed T. pallidipennis nymphs to two strains (Morelos and Chilpancingo) of T. cruzi. Once infected, the fifth-instar bugs were distributed among three different temperature groups, i.e. 20, 30, and 34 °C, and the resulting parasites were counted when the bugs reached adulthood.
resultsThe number of parasites increased linearly with time at 20 °C and, to a lesser extent, at 30 °C, especially in the Chilpancingo compared to the Morelos strain. Conversely, at 34 °C, the number of parasites of both strains decreased significantly compared to the other two temperatures.
conclusionsThese results suggest negative effects on the abundance of T. cruzi in T. pallidipennis at high temperatures. This is the first evidence of the effect of high temperatures on a pathogenic agent transmitted by an insect vector in the context of global warming. Further tests should be done to determine whether this pattern occurs with other triatomine species and T. cruzi strains.
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