Xing Kun, Zhao Fei
Shanxi Key Laboratory of Integrated Pest Management in Agriculture, College of Plant Protection, Shanxi Agricultural University, Taiyuan 030031, China.
Insects. 2022 Mar 22;13(4):309. doi: 10.3390/insects13040309.
Daily temperature amplitudes (DTAs) significantly affect the ecological and physiological traits of insects. Most studies in this field are based on laboratory experiments, while there is limited research on the effects of changes in DTA on insect phenotypic plasticity under natural conditions. Therefore, we studied the acclimation effects of DTA on the longevity, total fecundity, early fecundity, and the thermal tolerance of adult diamondback moths ( L.) under naturally occurring environmental conditions. As DTAs increased, male longevity and total fecundity decreased, and early fecundity increased. An increase in DTA was significantly associated with the increased heat coma temperature (CT) of both males and females, but had no significant effect on their cold coma temperature (CT). Our findings highlight the effects of DTA on the acclimation response of and emphasize the importance of considering DTA in predicting models for assessing insect populations and the effects of climate change.
日温度振幅(DTAs)显著影响昆虫的生态和生理特征。该领域的大多数研究基于实验室实验,而关于自然条件下DTA变化对昆虫表型可塑性影响的研究有限。因此,我们研究了在自然环境条件下DTA对小菜蛾成虫寿命、总繁殖力、早期繁殖力和耐热性的驯化效应。随着DTA的增加,雄性寿命和总繁殖力下降,而早期繁殖力增加。DTA的增加与雄性和雌性热昏迷温度(CT)的升高显著相关,但对其冷昏迷温度(CT)没有显著影响。我们的研究结果突出了DTA对小菜蛾驯化反应的影响,并强调在预测模型中考虑DTA对于评估昆虫种群和气候变化影响的重要性。