Thorat Leena, Oulkar Dasharath P, Banerjee Kaushik, Nath Bimalendu B
Stress Biology Research Laboratory, Department of Zoology, Savitribai Phule Pune University, Pune 411 007, India.
J Biosci. 2016 Sep;41(3):331-9. doi: 10.1007/s12038-016-9628-7.
Stressful environments are known to perturb developmental patterns in insects. In the purview of desiccation as a stressor, relatively little is known about the developmental consequences linked with desiccation tolerance. In this study, we have particularly focused on the exploration of the temporal profile of postembryonic development in response to desiccation exposure in Drosophila melanogaster and the associated trade-offs. We document a correlation between variations in 20-hydroxyecdysone levels and the altered timing of metamorphic events during the life cycle. Following desiccation, we observed an extension in the larval longevity whereas the duration of the pupal and adult stages was significantly shortened. Alternately, feeding of 20-hydroxyecdysone apparently led to the restoration of the normal temporal pattern of development in the desiccated group. In spite of the desiccation-responsive heterochronic shifts in development, the overall lifespan post recovery remained almost unaltered among the desiccated and undesiccated groups suggesting plasticity in developmental control. This observation reminisces 'canalization-like' phenomenon that buffers alterations in the overall lifespan. We thus identified a desiccationresponsive period in the lifespan of D. melanogaster during which variations in ecdysone levels are capable to alter the temporal course of development.
众所周知,压力环境会扰乱昆虫的发育模式。在将干燥作为一种应激源的范畴内,与耐干燥性相关的发育后果相对鲜为人知。在这项研究中,我们特别专注于探索黑腹果蝇在暴露于干燥环境下胚胎后发育的时间概况以及相关的权衡取舍。我们记录了20-羟基蜕皮激素水平的变化与生命周期中变态事件时间改变之间的相关性。干燥处理后,我们观察到幼虫寿命延长,而蛹期和成虫期的持续时间显著缩短。相反,给干燥处理组喂食20-羟基蜕皮激素显然导致恢复了正常的发育时间模式。尽管发育过程中存在对干燥响应的异时性变化,但干燥处理组和未干燥处理组恢复后的总体寿命几乎保持不变,这表明发育控制具有可塑性。这一观察让人想起缓冲总体寿命变化的“运河化样”现象。因此,我们确定了黑腹果蝇寿命中的一个干燥响应期,在此期间蜕皮激素水平的变化能够改变发育的时间进程。