首页> 美国卫生研究院文献>Journal of Insect Science >Cold Hardiness and Supercooling Capacity in the Overwintering Larvae of the Codling Moth Cydia pomonella
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Cold Hardiness and Supercooling Capacity in the Overwintering Larvae of the Codling Moth Cydia pomonella

机译:dia蛾Cydia pomonella越冬幼虫的抗寒性和过冷能力

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摘要

The codling moth, Cydia pomonella L. (Lepidoptera: Tortricidae), a worldwide apple pest, is classified as a freeze-intolerant organism and one of the most cold-tolerant pests. The objectives of this study were to examine the supercooling point of overwintering and non-diapausing larvae of C. pomonella as an index of its cold hardiness, and to assess larval mortality following 24 h exposure to extreme low temperatures ranging from -5 to -25°C. The mean (±SE) supercooling point for feeding larvae (third through fifth instars) was -12.4 ± 1.1°C. The mean supercooling point for cocooned, non-diapausing larvae (i.e., non-feeding stages) decreased as the days that the arvae were cocooned increased and changed between -15.1 ± 1.2°C for one to two day cocooned arvae and -19.2 ± 1.8°C for less than five day cocooned larvae. The mean (±SE) supercooling point for other non-feeding stages containing pupae and overwintering larvae were -19.9 ± 1.0°C and -20.2 ± 0.2°C, respectively. Mean supercooling points of C. pomonella larvae were significantly lower during the winter months than the summer months, and sex had no effect on the supercooling point of C. pomonella larvae. The mortality of larvae increased significantly after individuals were exposed to temperatures below the mean supercooling point of the population. The supercooling point was a good predictor of cold hardiness.
机译:苹果co蛾(Cydia pomonella L.(鳞翅目:Tor科))是一种全球性的苹果害虫,被归类为耐冷冻的生物,也是最耐寒的害虫之一。这项研究的目的是检查C. pomonella越冬和不渗水幼虫的过冷点作为其耐寒性的指标,并评估暴露于-5至-25之间的极低温下24小时后的幼虫死亡率。 ℃。喂食幼虫(第三至第五龄)的平均(±SE)过冷点为-12.4±1.1°C。带茧的,不渗水的幼虫(即非喂食阶段)的平均过冷点随着被附窝的天数的增加而降低,并且在1-2天成茧的附窝的-15.1±1.2°C和-19.2±1.8之间变化少于五天的茧状幼虫。含有p和越冬幼虫的其他非饲喂阶段的平均(±SE)过冷点分别为-19.9±1.0°C和-20.2±0.2°C。冬季,月球梭菌幼虫的平均过冷点显着低于夏季,性别对月球梭菌幼虫的过冷点没有影响。个体暴露于低于种群平均过冷点的温度后,幼虫的死亡率显着增加。过冷点是抗寒性的良好预测指标。

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