Unité d'Ecologie et de Biogéographie, Biodiversity Research Centre, Université Catholique de Louvain, Louvain-la-Neuve, Belgium.
FEBS J. 2010 Jan;277(1):174-85. doi: 10.1111/j.1742-4658.2009.07470.x. Epub 2009 Nov 26.
A common physiological response of organisms to environmental stresses is the increase in expression of heat shock proteins (Hsps). In insects, this process has been widely examined for heat stress, but the response to cold stress has been far less studied. In the present study, we focused on 11 Drosophila melanogaster Hsp genes during the stress exposure and recovery phases. The temporal gene expression of adults was analyzed during 9 h of cold stress at 0 degrees C and during 8 h of recovery at 25 degrees C. Increased expression of some, but not all, Hsp genes was elicited in response to cold stress. The transcriptional activity of Hsp genes was not modulated during the cold stress, and peaks of expression occurred during the recovery phase. On the basis of their response, we consider that Hsp60, Hsp67Ba and Hsc70-1 are not cold-inducible, whereas Hsp22, Hsp23, Hsp26, Hsp27, Hsp40, Hsp68, Hsp70Aa and Hsp83 are induced by cold. This study suggests the importance of the recovery phase for repairing chilling injuries, and highlights the need to further investigate the contributions of specific Hsp genes to thermal stress responses. Parallels are drawn between the stress response networks resulting from heat and cold stress.
生物体对环境应激的一种常见生理反应是热休克蛋白(Hsps)表达的增加。在昆虫中,这一过程已经广泛研究过热应激,但对冷应激的反应研究得要少得多。在本研究中,我们专注于 11 个黑腹果蝇 Hsp 基因在应激暴露和恢复阶段的表达情况。在 0°C 的冷应激下,对成年个体进行了 9 小时的时间基因表达分析,在 25°C 的恢复阶段进行了 8 小时的分析。一些(但不是全部)Hsp 基因的表达增加对冷应激有反应。Hsp 基因的转录活性在冷应激过程中没有被调节,表达高峰出现在恢复阶段。基于它们的反应,我们认为 Hsp60、Hsp67Ba 和 Hsc70-1 不是冷诱导的,而 Hsp22、Hsp23、Hsp26、Hsp27、Hsp40、Hsp68、Hsp70Aa 和 Hsp83 则受冷诱导。本研究表明恢复阶段对修复冷害的重要性,并强调需要进一步研究特定 Hsp 基因对热应激反应的贡献。热和冷应激产生的应激反应网络之间存在相似之处。