Department of Entomology, Ohio State University, Columbus, OH 43210, USA.
J Comp Physiol B. 2013 Feb;183(2):189-201. doi: 10.1007/s00360-012-0707-2. Epub 2012 Sep 13.
The Antarctic midge, Belgica antarctica, experiences sub-zero temperatures and desiccating conditions for much of the year, and in response to these environmental insults, larvae undergo rapid shifts in metabolism, mobilizing carbohydrate energy reserves to promote synthesis of low-molecular-mass osmoprotectants. In this study, we measured the expression of 11 metabolic genes in response to thermal and dehydration stress. During both heat and cold stress, we observed upregulation of phosphoenolpyruvate carboxykinase (pepck) and glycogen phosphorylase (gp) to support rapid glucose mobilization. In contrast, there was a general downregulation of pathways related to polyol, trehalose, and proline synthesis during both high- and low-temperature stress. Pepck was likewise upregulated in response to different types of dehydration stress; however, for many of the other genes, expression patterns depended on the nature of dehydration stress. Following fast dehydration, expression patterns were similar to those observed during thermal stress, i.e., upregulation of gp accompanied by downregulation of trehalose and proline synthetic genes. In contrast, gradual, prolonged dehydration (both at a constant temperature and in conjunction with chilling) promoted marked upregulation of genes responsible for trehalose and proline synthesis. On the whole, our data agree with known metabolic adaptations to stress in B. antarctica, although a few discrepancies between gene expression patterns and downstream metabolite contents point to fluxes that are not controlled at the level of transcription.
南极蠓,即 Belgica antarctica,在一年中的大部分时间里都会经历零下的温度和干燥的环境条件。为了应对这些环境压力,幼虫的新陈代谢会迅速发生变化,动员碳水化合物能量储备,以促进低分子量渗透保护剂的合成。在这项研究中,我们测量了 11 种代谢基因对热和脱水应激的表达。在热和冷应激过程中,我们观察到磷酸烯醇丙酮酸羧激酶(pepck)和糖原磷酸化酶(gp)的上调,以支持快速葡萄糖动员。相比之下,在高温和低温应激期间,与多元醇、海藻糖和脯氨酸合成相关的途径普遍下调。Pepck 也因不同类型的脱水应激而上调;然而,对于许多其他基因,表达模式取决于脱水应激的性质。在快速脱水后,表达模式与热应激时观察到的相似,即 gp 的上调伴随着海藻糖和脯氨酸合成基因的下调。相比之下,逐渐的、长时间的脱水(无论是在恒温下还是与冷藏结合)会显著上调负责海藻糖和脯氨酸合成的基因。总的来说,我们的数据与 B. antarctica 对压力的已知代谢适应一致,尽管基因表达模式和下游代谢物含量之间存在一些差异,表明通量不受转录水平的控制。