Department of Entomology, China Agricultural University, Beijing, China.
National Agricultural Technology Extension and Service Center, Beijing, China.
Insect Sci. 2019 Apr;26(2):217-228. doi: 10.1111/1744-7917.12541. Epub 2017 Nov 24.
Circadian clock genes in peripheral tissues usually play an important role in regulating the circadian rhythms. Light is the most important environmental signal for synchronizing endogenous rhythms with the daily light-dark cycle, and compound eyes are known as the principal circadian photoreceptor for photic entrainment in most moths. However, there is little evidence for circadian timing in compound eyes. In the current study, we isolated the timeless gene, designated Ha-tim (GenBank accession number: KM233162), from the cotton bollworm Helicoverpa armigera. Ha-tim and period (Ha-per) showed low messenger RNA levels in the compound eyes compared to the other tested adult organs. Ha-tim and Ha-per transcript levels were dependent on an endogenous rhythm that fluctuated over a daily cycle in the compound eyes and heads. The cycles of Ha-tim and Ha-per transcript levels followed similar time courses, and identical expression patterns of the two genes were observed in the compound eyes and heads. Ha-tim and Ha-per were down-regulated in the compound eyes after light exposure, copulation and starvation. These results indicated that Ha-tim and Ha-per transcript levels were regulated by endogenous and exogenous factors. Our study helped to improve our understanding of the circadian clock machinery in compound eyes and other peripheral tissues.
外周组织中的生物钟基因通常在调节昼夜节律中起着重要作用。光作为同步内源性节律与日常光-暗循环的最重要环境信号,而复眼被认为是大多数鳞翅目昆虫光驯化的主要生物钟光感受器。然而,在复眼中几乎没有关于生物钟计时的证据。在本研究中,我们从棉铃虫 Helicoverpa armigera 中分离出 timeless 基因,命名为 Ha-tim(GenBank 登录号:KM233162)。与其他测试的成年器官相比,Ha-tim 和 period(Ha-per)在复眼中的信使 RNA 水平较低。Ha-tim 和 Ha-per 的转录水平依赖于内源性节律,该节律在复眼和头部中随每日周期波动。Ha-tim 和 Ha-per 转录水平的周期遵循相似的时间过程,并且在复眼和头部中观察到这两个基因的相同表达模式。光暴露、交配和饥饿后,Ha-tim 和 Ha-per 在复眼中的表达水平下调。这些结果表明 Ha-tim 和 Ha-per 的转录水平受内源性和外源性因素的调节。我们的研究有助于提高我们对复眼和其他外周组织中生物钟机制的理解。