Nylin Sören
Department of Zoology, Stockholm University Stockholm, Sweden.
Physiol Entomol. 2013 Jun;38(2):96-104. doi: 10.1111/phen.12014. Epub 2013 May 6.
The 'choice' of whether to enter diapause or to develop directly has profound effects on the life histories of insects, and may thus have cascading consequences such as seasonal morphs and other less obvious forms of seasonal plasticity. Present knowledge of the control of diapause and seasonal morphs at the physiological and molecular levels is briefly reviewed. Examples, mainly derived from personal research (primarily on butterflies), are given as a starting point with the aim of outlining areas of research that are still poorly understood. These include: the role of the direction of change in photoperiod; the role of factors such as temperature and diet in modifying the photoperiodic responses; and the role of sex, parental effects and sex linkage on photoperiodic control. More generally, there is still a limited understanding of how external cues and physiological pathways regulating various traits are interconnected via gene action to form a co-adapted complete phenotype that is adaptive in the wild despite environmental fluctuation and change.
进入滞育或直接发育的“选择”对昆虫的生活史有着深远影响,因此可能会产生连锁反应,如季节性形态变化和其他不太明显的季节性可塑性形式。本文简要回顾了目前在生理和分子水平上对滞育和季节性形态控制的认识。主要基于个人研究(主要是关于蝴蝶)给出的例子作为起点,旨在概述仍未得到充分理解的研究领域。这些领域包括:光周期变化方向的作用;温度和饮食等因素在改变光周期反应中的作用;以及性别、亲代效应和性连锁在光周期控制中的作用。更普遍地说,对于外部线索和调节各种性状的生理途径如何通过基因作用相互连接,以形成一种在野生环境中尽管存在环境波动和变化仍具有适应性的共同适应的完整表型,人们的理解仍然有限。