Two neuropeptides that promote blood-feeding in Anopheles stephensi mosquitoes
Bansal, P.; Pillai, R.; Babu, P. D.; Sen, S. Q.
Show abstract
Animals routinely need to make decisions about what to eat and when. These decisions are influenced not only by the availability and quality of food but also by the internal state of the animal, which needs to compute and give weights to these different variables before making a choice. Feeding preferences of female mosquitoes exemplify this behavioural plasticity. Both male and female mosquitoes usually feed on carbohydrate-rich sources of nectar or sap, but the female also feeds on blood, which is essential for egg development. This blood-appetite is modulated across the females reproductive cycle, yet little is known about the factors that bring it about. We show that mated, but not virgin Anopheles stephensi females, a major vector of urban malaria in the Indian sub-continent and West Africa, suppress blood feeding between a blood meal and oviposition. We identify several candidate genes through transcriptomics of blood-deprived and -sated An. stephensi central brains that could modulate this behaviour. We show that short neuropeptide F (sNPF) and RYamide (RYa) act together to promote blood feeding and identify a cluster of cells in the subesophageal zone that expresses sNPF transcripts only in the blood-hungry state. Such females also have more sNPF transcripts in their midguts. Based on these data, we propose a model where increased sNPF levels in the brain and gut promote a state of blood-hunger, which drives feeding behaviour either by sNPFs action in the two tissues independently or via a communication between them. This occurs in the context of the action of RYa in the brain.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A persistent behavioral state enables sustained predation of humans by mosquitoes 97%
- Converting endogenous genes of the malaria mosquito into simple non-autonomous gene drives for population replacement 96%
- A transcriptomic atlas of Aedes aegypti reveals detailed functional organization of major body parts and gut regional specializations in sugar-fed and blood-fed adult females 96%
Similar papers in this journal
- Gene drive mosquitoes can aid malaria elimination by retarding Plasmodium sporogonic development 96%
- Integrating lipid metabolism, pheromone production and perception by Fruitless and Hepatocyte nuclear factor 4 96%
- Decoding sexual dimorphism of the sex-shared nervous system at single-neuron resolution 95%
Similar papers in this journal
- Genetic and functional diversification of chemosensory pathway receptors in filarial nematode parasites 95%
- Single-nucleus transcriptomics of wing sexual dimorphism and scale cell specialization in sulphur butterflies 94%
- Sequence heterochrony led to a gain of functionality in an immature stage of the central complex: a fly-beetle insight 93%
Similar papers in this journal
- A novel beta-adrenergic like octopamine receptor modulates the audition of malaria mosquitoes and serves as insecticide target 95%
- Cell-specific responses of Anopheles gambiae fat body to blood feeding and infection at a single nuclei resolution 95%
- Innate behavior sequence progression by peptide-mediated interorgan crosstalk 95%
"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.