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Characterization of drought-induced rapid cold-hardening in the Antarctic midge, Belgica antarctica

机译:干旱引起的南极mid蚊(Belgica antarctica)的快速冷硬化的特征

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Survival of the terrestrial midge, Belgica antarctica, on the Antarctic Peninsula is promoted, not only by their adaptations to prolonged exposures to seasonal stresses, but also by their ability to respond to unpredictable changes in their environments. Rapid cold-hardening (RCH) is an extremely swift acclimatory response of insects that occurs within minutes to hours. While the RCH response is most commonly induced by a brief exposure to mildly low temperatures, a similar rapid acclimatory response can also be elicited by exposure to drought. In this study, we characterized this drought-induced RCH in larvae of B. antarctica. Compared to fully hydrated larvae, those desiccated at various relative humidity (R.H.) conditions between 0 and 99% R.H. for 2h had a significantly greater survival (50%) to freezing at-14 degrees C. The amount of water loss varied between 4 and 16% depending on R.H. conditions; however, all treatments were equally effective in eliciting the protective response against freezing stress, and its induction was evident within 30min of desiccation. Lack of substantial changes in body-fluid osmolality or levels of major cryoprotectants suggest that accumulation of these protective solutes is not a primary mechanism of this response. Interestingly, the RCH protection induced by desiccation persisted after larvae were allowed to recover a significant portion of the lost water. Our results indicate that larval midges are highly sensitive to desiccation, capable of swiftly initiating physiological changes in response to a small reduction in their body water content.
机译:在南极半岛上,陆地mid虫(Belgica antarctica)的生存得以促进,这不仅是因为它们适应了长时间暴露在季节性压力下的适应能力,而且还因为它们能够应对环境中不可预测的变化。快速冷硬化(RCH)是昆虫在数分钟至数小时内发生的极快速的适应性反应。虽然RCH反应最常见的是短暂暴露于温和的低温下,但暴露于干旱也可以引起类似的快速适应性反应。在这项研究中,我们表征了这种干旱诱导的南极双歧杆菌幼虫中的RCH。与完全水合的幼虫相比,在0至99%RH之间的各种相对湿度(RH)条件下干燥2h的幼虫在14摄氏度下冷冻时的存活率(50%)明显更高。失水量在4℃至4℃之间变化。 16%取决于RH条件;但是,所有处理均能有效地引起针对冰冻应激的保护反应,并且在干燥30分钟内即可明显诱导出冰冻应激。体液重量克分子渗透压浓度或主要防冻剂含量缺乏实质性变化,表明这些保护性溶质的积累不是该反应的主要机制。有趣的是,在允许幼虫恢复大部分失水后,由干燥引起的RCH保护仍然存在。我们的结果表明,幼虫对干燥高度敏感,能够响应体内水分的少量减少而迅速启动生理变化。

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