Clock genes and environmental cues coordinate <i>Anopheles</i> pheromone synthesis, swarming, and mating.
basic_science · Level V
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- Record sourced from PubMed, PMID 33479155.
- Also identified by DOI 10.1126/science.abd4359 and PMC identifier 9854397.
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Abstract
<i>Anopheles</i> mating is initiated by the swarming of males at dusk followed by females flying into the swarm. Here, we show that mosquito swarming and mating are coordinately guided by clock genes, light, and temperature. Transcriptome analysis shows up-regulation of the clock genes <i>period</i> (<i>per</i>) and <i>timeless</i> (<i>tim</i>) in the head of field-caught swarming <i>Anopheles coluzzii</i> males. Knockdown of <i>per</i> and <i>tim</i> expression affects <i>Anopheles gambiae s.s.</i> and <i>Anopheles stephensi</i> male mating in the laboratory, and it reduces male <i>An. coluzzii</i> swarming and mating under semifield conditions. Light and temperature affect mosquito mating, possibly by modulating <i>per</i> and/or <i>tim</i> expression. Moreover, the desaturase gene <i>desat1</i> is up-regulated and rhythmically expressed in the heads of swarming males and regulates the production of cuticular hydrocarbons, including heptacosane, which stimulates mating activity.
Medical subject headings
- Anopheles
- CLOCK Proteins
- Flight, Animal
- Gene-Environment Interaction
- Period Circadian Proteins
- Pheromones
- Sexual Behavior, Animal