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温度和光周期对豆芫菁假蛹滞育结束的影响。

Effects of temperature and photoperiod on termination of pseudopupal diapause in the bean blister beetle, Epicauta gorhami.

机构信息

Laboratory of Entomology, Department of Environmental and Horticultural Sciences, Minami Kyushu University, Tateno 3764-1, Miyakonojo, Miyazaki 885-0035, Japan.

出版信息

J Insect Physiol. 2012 May;58(5):737-42. doi: 10.1016/j.jinsphys.2012.02.009. Epub 2012 Mar 5.

Abstract

Larvae of the bean blister beetle, Epicauta gorhami (Coleoptera: Meloidae), feed on grasshopper eggs in soil and undergo hypermetamorphosis. This beetle undergoes larval diapause in the fifth instar as a pseudopupa, a form characteristic of hypermetamorphosis in meloid beetles. This pseudopupal diapause is maintained for a long period if the larvae are kept under continuous diapause-inducing short-day conditions. In the present study, the effects of temperature and photoperiod on termination of pseudopupal diapause in E. gorhami were examined using pseudopupae obtained under 12L-12D at 25°C. Diapause was terminated by exposure to low or high temperature, but not by transfer to long-day conditions. The pseudopupal stage comprises diapause and post-diapause phases despite its unchanging appearance. The optimum low temperature for diapause termination was 10-15°C, and a higher or lower temperature was less effective. There was an individual variation in the low temperature requirement for diapause termination and post-diapause development may not occur until this requirement is satisfied. Although under natural conditions pseudopupae may encounter low temperatures that are effective for diapause termination at different ages, our results show that pseudopupae at various ages respond similarly to low temperature exposure. This response may ensure that resumption of development synchronizes in a population.

摘要

豆芫菁幼虫(Coleoptera:Meloidae)以土壤中的蝗虫卵为食,并经历超变态发育。这种甲虫在第五龄幼虫期以伪蛹的形式进入幼虫滞育,这是一种在芫菁科甲虫中超变态发育的特征。如果幼虫持续处于诱导滞育的短日照条件下,这种伪蛹滞育将长时间维持。在本研究中,使用在 25°C、12L-12D 条件下获得的伪蛹,研究了温度和光周期对 Epicauta gorhami 终止伪蛹滞育的影响。滞育可以通过暴露在低温或高温下终止,但不能通过转移到长日照条件下终止。尽管外观不变,但伪蛹阶段包括滞育和滞育后两个阶段。终止滞育的最适低温为 10-15°C,温度较高或较低则效果较差。终止滞育和滞育后发育的低温要求存在个体差异,并且可能要满足该要求后才会发生。尽管在自然条件下,伪蛹可能会遇到在不同年龄有效终止滞育的低温,但我们的结果表明,不同年龄的伪蛹对低温暴露的反应相似。这种反应可能确保了种群中发育的同步恢复。

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