North Dakota State University, Fargo, ND, United States of America.
USDA-ARS, Fargo, ND, United States of America.
Comp Biochem Physiol A Mol Integr Physiol. 2021 Jun;256:110937. doi: 10.1016/j.cbpa.2021.110937. Epub 2021 Mar 15.
Diapause is a non-feeding state that many insects undergo to survive the winter months. With fixed resources, overall metabolism and insulin signaling (IIS) are maintained at low levels, but whether those change in response to seasonal temperature fluctuations remains unknown. The focus of this study was to determine 1) how genes in the insulin signaling pathway vary throughout diapause and 2) if that variation changes in response to temperature. To test the hypothesis that expression of IIS pathway genes vary in response to temperature fluctuations during overwintering, alfalfa leafcutting bees, Megachile rotundata, were overwintered at either a constant 4 °C in the lab or in naturally fluctuating temperatures in the field. Expression levels of genes in the IIS pathway, cell cycle regulators, and transcription factors were measured. Overall our findings showed that a few key targets of the insulin signaling pathway, along with growth regulators, change during overwintering, suggesting that only cell cycle regulators, and not the IIS pathway as a whole, change across the phases of diapause. To answer our second question, we compared gene expression levels between temperature treatments at each month for a given gene. We observed significantly more differences in expression of IIS pathway targets, indicating that overwintering conditions impact insulin pathway gene expression and leads to altered expression profiles. With differences seen between temperature treatment groups, these findings indicate that constant temperatures like those used in agricultural storage protocols, lead to different expression profiles and possibly different diapause phenotypes for alfalfa leafcutting bees.
滞育是许多昆虫为了度过冬季而经历的一种非进食状态。在固定的资源条件下,整体代谢和胰岛素信号(IIS)被维持在低水平,但这些是否会因季节性温度波动而发生变化尚不清楚。本研究的重点是确定 1)胰岛素信号通路中的基因在滞育期间如何变化,2)这种变化是否会对温度做出响应。为了验证胰岛素信号通路基因的表达会因越冬期间温度波动而发生变化的假设,我们以苜蓿切叶蜂(Megachile rotundata)为研究对象,将其在实验室的恒定 4°C 或野外的自然温度波动条件下进行越冬。测量了 IIS 通路、细胞周期调控因子和转录因子的基因表达水平。总的来说,我们的研究结果表明,胰岛素信号通路的几个关键靶标以及生长调节剂在越冬期间发生了变化,这表明只有细胞周期调控因子,而不是整个 IIS 通路,在滞育的各个阶段发生了变化。为了回答我们的第二个问题,我们比较了每个月给定基因在不同温度处理下的基因表达水平。我们观察到 IIS 通路靶标表达的差异显著更大,这表明越冬条件会影响胰岛素通路基因表达,并导致表达谱发生改变。由于在温度处理组之间观察到差异,这些发现表明,像农业储存方案中使用的恒定温度会导致苜蓿切叶蜂的不同表达谱和可能不同的滞育表型。