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Photoperiodic induction of prepupal diapause and its role in synchronization with host phenology in the hibiscus caterpillar, Xanthodes transversa

机译:光周期诱导的pu前滞育及其与芙蓉毛毛虫,横生黄单胞菌的宿主物候同步

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摘要

The hibiscus caterpillar, Xanthodes transversa (Lepidoptera: Noctuidae), is a multivoltine insect that is an important pest of Malvaceae plants such as the okra, Abelmoschus esculentus, and the common rose mallow, Hibiscus mutabilis, in Japan. In the present study, the effects of photoperiod and temperature on the induction of prepupal diapause and the adaptive significance of this diapause were examined in a local population of X.transversa in Miyazaki, Kyushu, southwestern Japan. Larvae showed a long-day photoperiodic response for controlling the induction of prepupal diapause with a critical day length between 13 and 14h at 20 to 25 degrees C. Under long-day conditions larvae rapidly pupated from the sixth instar, but under short-day conditions they entered diapause in the prepupal stage. Diapause occurrence in the field increased in late September, which was consistent with the laboratory results in terms of the photoperiodic response. Non-diapause development after this time is maladaptive because most larvae of the next generation could not reach the critical stage (prepupae) before winter and died during early winter in outdoor experiments. Larvae suffered from a high rate of mortality when fed leaves collected late in autumn. The photoperiodic response for controlling the induction of diapause in this insect may play an important role in synchronizing the life cycle with the seasonal changes in food and temperature conditions.
机译:芙蓉毛毛虫,Xanthodes transversa(鳞翅目:夜蛾科),是一种多伏性昆虫,是锦葵科植物的重要害虫,如秋葵,Abelmoschus esculentus和日本常见的玫瑰锦葵属木槿。在本研究中,在日本西南部的九州宫崎县的横贯横纹杆菌的当地居民中,研究了光周期和温度对诱发pu前滞育的影响以及该滞育的适应性意义。幼虫表现出全天的光周期反应,以控制诱发pu前滞育,在20至25摄氏度下的关键日长在13至14h之间。在长日条件下,幼虫从第六龄期迅速化脓,但在短日条件下他们在孕前阶段进入了滞育期。 9月下旬,田间滞育发生增加,这与光周期反应方面的实验室结果一致。这段时间之后的非滞育发育是适应不良的,因为下一代的大多数幼虫在冬季之前无法达到关键阶段((),而在户外实验中则在冬季初死亡。幼虫在秋季后期采食叶片时死亡率很高。控制该昆虫滞育诱导的光周期反应可能在使生命周期与食物和温度条件的季节性变化同步中起重要作用。

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