...
首页> 外文期刊>Bulletin of Entomological Research >Role of natural day-length and temperature in determination of summer and winter diapause in Pieris melete (Lepidoptera: Pieridae)
【24h】

Role of natural day-length and temperature in determination of summer and winter diapause in Pieris melete (Lepidoptera: Pieridae)

机译:自然天长和温度在确定冬青菜中冬虫夏枯病中的作用(鳞翅目:天蛾科)

获取原文
获取原文并翻译 | 示例
           

摘要

Under field conditions, the cabbage butterfly, Pieris melete, displays a pupal summer diapause in response to relatively low daily temperatures and gradually increasing day-length during spring and a pupal winter diapause in response to the progressively shorter day-length. To determine whether photoperiod is 'more' important than temperature in the determination of summer and winter diapause, or vice versa, the effects of naturally changing day-length and temperature on the initiation of summer and winter diapause were systematically investigated under field conditions for five successive years. Field results showed that the incidence of summer diapause significantly declined with the naturally increasing temperature in spring and summer generations. Path coefficient analysis showed that the effect of temperature was much greater than photoperiod in the determination of summer diapause. In autumn, the incidence of diapause was extremely low when larvae developed under gradually shortening day-length and high temperatures. The incidence of winter diapause increased to 60-90% or higher with gradually shortening day-length combined with temperatures between 20.0 degrees C and 22.0 degrees C. Decreasing day-length played a more important role in the determination of winter diapause induction than temperature. The eco-adaptive significance of changing day-length and temperature in the determination of summer and winter diapause was discussed.
机译:在田间条件下,卷心菜蝴蝶Pieris melete在日间相对较低的温度下会表现出summer的夏季滞育,并在春季期间逐渐增加日长,而在日间逐渐缩短的情况下,则表现出winter的冬季滞育。为了确定在确定夏季和冬季滞育过程中光周期是否比温度“更重要”,或者反之亦然,在田间条件下,系统地研究了日长和温度自然变化对夏季和冬季滞育过程的影响,研究了五个连续几年。田间结果表明,夏季滞育的发生率随着春季和夏季世代温度的自然升高而显着下降。路径系数分析表明,在确定夏季滞育过程中,温度的影响远大于光周期。在秋天,当幼虫在逐渐缩短的日长和高温下发育时,滞育的发生率极低。随着日长的逐渐缩短以及温度在20.0摄氏度至22.0摄氏度之间的升高,冬季滞育的发生率增加到60-90%或更高。降低日长在确定冬季滞育的诱导中起着比温度更重要的作用。讨论了改变日长和温度对确定夏季和冬季滞育的生态适应意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号