Department of Entomology, The Ohio State University, 2021 Coffey Rd, Columbus, OH, 43210, USA.
Tyson Research Center, Washington University in St. Louis, 6750 Tyson Valley Road, Eureka, MO, 63025, USA.
Sci Rep. 2024 Jan 29;14(1):2398. doi: 10.1038/s41598-024-52794-x.
Artificial light at night (ALAN) is an increasingly important form of environmental disturbance as it alters Light:Dark cycles that regulate daily and seasonal changes in physiology and phenology. The Northern house mosquito (Culex pipiens) and the tiger mosquito (Aedes albopictus) enter an overwintering dormancy known as diapause that is cued by short days. These two species differ in diapause strategy: Cx. pipiens diapause as adult females while Ae. albopictus enter a maternally-programmed, egg diapause. Previous studies found that ALAN inhibits diapause in both species, but the mechanism is unknown. As the circadian clock is implicated in the regulation of diapause in many insects, we examined whether exposure to ALAN altered the daily expression of core circadian cloc genes (cycle, Clock, period, timeless, cryptochrome 1, cryptochrome 2, and Par domain protein 1) in these two species when reared under short-day, diapause-inducing conditions. We found that exposure to ALAN altered the abundance of several clock genes in adult females of both species, but that clock gene rhythmicity was maintained for most genes. ALAN also had little effect on clock gene abundance in mature oocytes that were dissected from female Ae. albopictus that were reared under short day conditions. Our findings indicate that ALAN may inhibit diapause initiation through the circadian clock in two medically-important mosquitoes.
夜间人工光照(ALAN)是一种日益重要的环境干扰形式,因为它改变了调节生理和物候季节性变化的光暗周期。北方家蚊(Culex pipiens)和白纹伊蚊(Aedes albopictus)进入一种称为滞育的越冬休眠状态,这种休眠状态是由短日照引发的。这两个物种的滞育策略不同:Cx. pipiens 以成年雌蚊的形式进入滞育,而 Ae. albopictus 则进入由母体编程的卵滞育。先前的研究发现,ALAN 抑制了这两个物种的滞育,但机制尚不清楚。由于生物钟被认为与许多昆虫的滞育调节有关,我们研究了当这两个物种在短日照、诱导滞育的条件下饲养时,暴露于 ALAN 是否改变了核心生物钟 cloc 基因(周期、Clock、period、timeless、cryptochrome 1、cryptochrome 2 和 Par 结构域蛋白 1)的日常表达。我们发现,暴露于 ALAN 改变了两种物种成年雌蚊中几种生物钟基因的丰度,但大多数基因的生物钟节律仍然保持。ALAN 对在短日条件下饲养的雌性白纹伊蚊成熟卵母细胞中生物钟基因丰度的影响也很小。我们的研究结果表明,ALAN 可能通过两种重要的医学蚊子中的生物钟来抑制滞育的开始。