Dehydration induced AePer50 regulates midgut infection in Aedes aegypti
Accoti, A.; Becker, M.; Abu, A. E. I.; Vulcan, J.; Yun, R.; Widen, S. G.; Sylla, M.; Popov, V. L.; Weaver, S. C.; Dickson, L. B.
Show abstract
In the face of climate change, mosquitoes will experience evolving climates including longer periods of drought. An important physiological response to dry environments is the protection against water loss or dehydration, here defined as desiccation tolerance. Various environmental factors including temperature are known to alter interactions between the mosquito, Aedes aegypti, and the arboviruses it transmits, but little is known about how low humidity impacts arboviral infection. Here, we report that a gene upregulated in response to desiccation is important for controlling midgut infection. We have identified two genetically diverse lines of Ae. aegypti with marked differences in desiccation tolerance. To understand if the genetic basis underlying desiccation tolerance is the same between the contrasting lines, we compared gene expression profiles between desiccant treated and non-desiccant treated individuals in both the desiccation tolerant and susceptible lines by RNAseq. Gene expression analysis demonstrates that different genes are differentially expressed in response to desiccation stress between desiccation tolerant and susceptible lines. The most highly expressed transcript under desiccation stress in the desiccation susceptible line encodes a peritrophin protein, AePer50. Peritrophins play a crucial role in peritrophic matrix formation after a bloodmeal. Gene silencing of AePer50 by RNAi demonstrates that expression of AePer50 is required for survival of the desiccation susceptible line under desiccation stress, but not for the desiccation tolerant line. Moreover, the knockdown of AePer50 results in higher infection rates and viral replication rates of ZIKV and higher infection rates of CHIKV. Finally, following a bloodmeal, the desiccation susceptible line develops a thicker peritrophic matrix than the desiccation tolerant line. Together these results provide a functional link between the protection against desiccation and midgut infection which has important implications in predicting how climate change will impact mosquito-borne viruses.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Wolbachia wAlbB inhibit dengue and Zika infection in the mosquito Aedes aegypti with an Australian background 98%
- Infertility and fecundity loss of Wolbachia-infected Aedes aegypti hatched from quiescent eggs is expected to alter invasion dynamics 96%
- Belgian Culex pipiens pipiens are competent vectors for West Nile virus but not Usutu virus 96%
Similar papers in this journal
- The tortoise strategy as an arbovirus fitness phenotype within the mosquito as revealed by a novel formulation of age-structured vectorial capacity 96%
- Impact of temperature on vector competence of Culex pipiens molestus: implications for Usutu virus transmission in temperate regions 96%
- Expression of fatty acid synthase genes and their role in development and arboviral infection of Aedes aegypti 95%
Similar papers in this journal
- Novel phenotype of Wolbachia strain wPip in Aedes aegypti challenges assumptions on mechanisms of Wolbachia-mediated dengue virusinhibition . 97%
- A decade of stability for wMel Wolbachia in natural Aedes aegypti populations 96%
- The salivary protein Saglin facilitates efficient midgut colonization of Anopheles mosquitoes by malaria parasites 95%
Similar papers in this journal
- Stability and detection of nucleic acid from viruses and hosts in mosquito blood meals 96%
- Functional disruption of Transferrin expression alters reproductive physiologyin Anopheles culicifacies 94%
- A LAMP assay for the rapid and robust assessment of Wolbachia infection in Aedes aegypti under field and laboratory conditions 94%
Similar papers in this journal
- Relevance study of vector competence and insecticide resistance in Aedes aegypti laboratory lines 97%
- Preimaginal development of Aedes aegypti in brackish water produces adult mosquitoes with thicker cuticles and greater insecticide resistance 96%
- Response to thermal and infection stresses in an American vector of visceral leishmaniasis. 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.