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Short term hardening effects on survival of acute and chronic cold exposure by Drosophila melanogaster larvae

机译:果蝇幼虫对急性和慢性冷暴露存活的短期强化作用

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摘要

We quantified the variation and plasticity in cold tolerance among four larval stages of four laboratory strains of Drosophila melanogaster in response to both acute (<2 hours of cold exposure) and chronic (∼7 hours of cold exposure) cold exposure. We observed significant differences in basal cold tolerance between the strains and among larval stages. Early larval instars were generally more tolerant of acute cold exposures than 3rd instar larvae. However, wandering larvae were more tolerant of chronic cold exposures than the other stages. Early stages also displayed a more pronounced rapid cold-hardening response than the later stages. Heat pre-treatment did not confer a significant increase in cold tolerance to any of the strains at any stage, pointing to different mechanisms being involved in resolving heat- and cold-elicited damage. However, when heat pre-treatment was combined with rapid cold-hardening as sequential pre-treatments, both positive (heat first) and negative (heat second) effects on cold tolerance were observed. We discuss possible mechanisms underlying cold-hardening and the effects of acute and chronic cold exposures.
机译:我们量化了四个果蝇果蝇对急性(<2小时的冷暴露)和慢性(〜7小时的冷暴露)响应的四个幼虫阶段的耐寒性的变化和可塑性。我们观察到菌株之间以及幼虫阶段之间的基础耐寒性有显着差异。早期幼虫的幼虫通常比3 rd 幼虫的幼虫对急性冷暴露的耐受性更高。然而,与其他阶段相比,徘徊的幼虫对慢性感冒的耐受性更高。与后期相比,早期还显示出更明显的快速冷硬化响应。在任何阶段,热预处理均未使任何菌株的耐寒性显着提高,这表明解决热和冷引起的损害涉及不同的机制。但是,当热预处理与快速冷硬化相结合作为顺序预处理时,对耐寒性既有正面(热第一)又有负面(热第二)的影响。我们讨论了冷硬化的潜在机制以及急性和慢性冷暴露的影响。

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