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Gabel, T. M.

Publications and source records attributed to Gabel, T. M..

2 recordsLinked to original sources

Aedes aegypti from a Population Co-occurring with Aedes albopictus Show Species-Selective Premating and Postmating Resistance to Reproductive Interference

BackgroundA female Aedes aegypti mosquito typically mates only once, receiving all of the reproductive materials required for her lifetime from a single male. During mating, males transfer chemical signals that permanently suppress female receptivity to subsequent mating attempts. Successful mating can be disrupted by satyrization, a form of interspecific reproductive interference in which Aedes albopictus males inseminate Aedes aegypti females without producing viable offspring, effectively rendering them sterile. Aedes aegypti populations from areas where both species co-occur can develop resistance to satyrization, which may arise through premating mechanisms including altered mating interactions and/or postmating mechanisms including reduced female sensitivity to male-derived chemical compounds. Methodology/Principal FindingsWe compared two Aedes aegypti strains derived from field collections in Lee County, Florida: one from a site where Aedes albopictus is established (Fort Myers) and one from a site with no known history of Aedes albopictus co-occurrence (Upper Captiva Island). Using laboratory mating assays, fluorescent dye transfer experiments, and male reproductive homogenate injections, we show that females from the co-occurring population exhibit reduced susceptibility to satyrization. This resistance is associated with two distinct mechanisms: reduced physical interactions with heterospecific males and reduced physiological sensitivity to Aedes albopictus homogenate following injection. Notably, co-occurring females retain sensitivity to signals from conspecific males, indicating that resistance mechanisms are species-selective rather than a generalized reduction in mating responsiveness. ConclusionsAedes aegypti females from a population co-occurring with Aedes albopictus show reduced susceptibility to satyrization under laboratory conditions, mediated by both premating and postmating mechanisms. The species selectivity of these responses suggests that co-occurring populations can discriminate between conspecific and heterospecific signals. Understanding how this discrimination is achieved and how it varies across populations will be important for interpreting interspecific mating dynamics and for evaluating vector control strategies that depend on mating interference, including sterile male release programs.

animal behavior and cognition↗

Characterizing physical interactions between male and female mosquitoes (Aedes aegypti) in relation to female receptivity and insemination outcomes using a hydrophobic fluorescent dye

Aedes aegypti, the yellow fever mosquito, presents a major threat to human health across the globe as a vector of disease-causing pathogens. Females of this species generally mate only once. From this single mating event, the female stores sufficient sperm to fertilize the multiple clutches of eggs produced during her lifetime. Mating causes dramatic changes in the females behavior and physiology, including a lifetime suppression of her mating receptivity. Female rejection behaviors include male avoidance, abdominal twisting, wing-flicking, kicking, and not opening vaginal plates or extruding the ovipositor. Many of these events occur on a scale that is too miniscule or fast to see by eye, so high-resolution videography has been used to observe these behaviors instead. However, videography can be labor intensive, require specialized equipment, and often requires restrained animals. We used an efficient, low-cost method to record physical contact between males and females during attempted and successful mating, determined by recording spermathecal filling after dissection. A hydrophobic oil-based fluorescent dye can be applied to the abdominal tip of one animal and can be subsequently transferred to the genitalia of animals of the opposite sex when genital contact occurs. Our data indicate that male mosquitoes make high levels of contact with both receptive and unreceptive females and that males attempt to mate with more females than they successfully inseminate. Female mosquitoes with disrupted remating suppression mate with and produce offspring from multiple males, transferring dye to each. These data suggest that physical copulatory interactions occur independently of the females receptivity to mate and that many of these interactions represent unsuccessful mating attempts that do not result in insemination.

animal behavior and cognition↗