Department of Entomology, Texas A&M University, College Station, TX, 77843, USA.
Department of Biology, Texas A&M University, College Station, TX, 77843, USA.
Sci Rep. 2022 Apr 27;12(1):6899. doi: 10.1038/s41598-022-10825-5.
Like other insects, Aedes aegypti displays strong daily patterns in host seeking and mating. Much of these behaviors are believed to be under the control of a circadian clock, an endogenous timekeeping mechanism relying on transcriptional/translational negative feedback loops that drive rhythmic physiology and behavior. To examine the connection between the circadian clock and various Ae. aegypti behaviors, we knocked out the core clock gene cycle using CRISPR/Cas9. We found that the rhythmic pattern and intensity of mRNA expression of seven circadian genes, including AeCyc, were altered across the day/night cycle as well as in constant darkness conditions. We further show that the mutant CYC protein is incapable of forming a dimer with CLK to stimulate per expression and that the endogenous clock is disabled in AeCyc mosquitoes. AeCyc do not display the bimodal locomotor activity pattern of wild type, have a significantly reduced response to host odor, reduced egg hatching rates, delayed embryonic development and reduced adult survival and mating success. Surprisingly however, the propensity to blood feed in AeCyc females is significantly higher than in wildtype females. Together with other recent work on the circadian clock control of key aspects of mosquito biology, our data on how cycle KO affects mosquito behavior and fitness provides a basis for further work into the pathways that connect the mosquito endogenous clock to its vector competence.
与其他昆虫一样,埃及伊蚊在寻找宿主和交配方面表现出强烈的每日节律。这些行为大多被认为受到生物钟的控制,生物钟是一种依赖于转录/翻译负反馈环的内源性计时机制,驱动节律生理和行为。为了研究生物钟与各种埃及伊蚊行为之间的联系,我们使用 CRISPR/Cas9 敲除了核心时钟基因 cycle。我们发现,七种生物钟基因(包括 AeCyc)的 mRNA 表达的节律模式和强度在昼夜周期以及持续黑暗条件下都发生了改变。我们进一步表明,突变的 CYC 蛋白不能与 CLK 形成二聚体来刺激 per 的表达,并且内源性时钟在 AeCyc 蚊子中失活。AeCyc 不会表现出野生型蚊子的双峰运动活动模式,对宿主气味的反应显著降低,孵化率降低,胚胎发育延迟,成虫存活率和交配成功率降低。然而令人惊讶的是,AeCyc 雌性的吸血倾向明显高于野生型雌性。结合最近关于生物钟对蚊子生物学关键方面的控制的其他工作,我们关于 cycle KO 如何影响蚊子行为和适应性的数据为进一步研究将蚊子内源性时钟与其媒介能力联系起来的途径提供了基础。