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Preservation of potassium balance is strongly associated with insect cold tolerance in the field: a seasonal study of Drosophila subobscura

机译:钾平衡的保持与田间昆虫的耐寒性密切相关:果蝇亚果蝇的季节性研究

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摘要

There is interest in pinpointing genes and physiological mechanisms explaining intra- and interspecific variations in cold tolerance, because thermal tolerance phenotypes strongly impact the distribution and abundance of wild animals. Laboratory studies have highlighted that the capacity to preserve water and ion homeostasis is linked to low temperature survival in insects. It remains unknown, however, whether adaptive seasonal acclimatization in free-ranging insects is governed by the same physiological mechanisms. Here, we test whether cold tolerance in field-caught Drosophila subobscura is high in early spring and lower during summer and whether this transition is associated with seasonal changes in the capacity of flies to preserve water and ion balance during cold stress. Indeed, flies caught during summer were less cold tolerant, and exposure of these flies to sub-zero temperatures caused a loss of haemolymph water and increased the concentration of K+ in the haemolymph (as in laboratory-reared insects). This pattern of ion and water balance disruption was not observed in more cold-tolerant flies caught in early spring. Thus, we here provide a field verification of hypotheses based on laboratory studies and conclude that the ability to maintain ion homeostasis is important for the ability of free-ranging insects to cope with chilling.
机译:由于热耐受表型强烈影响野生动物的分布和丰度,因此有必要指出基因和生理机制来解释种内和种间的耐寒性变化。实验室研究强调,保持水和离子稳态的能力与昆虫的低温生存有关。但是,尚不知道在散养昆虫中适应性季节适应是否受相同的生理机制控制。在这里,我们测试了田间捕获的果蝇亚种在冬季的初春是否较高,而夏季则较低,并且这种转变是否与果蝇在低温胁迫期间保持水分和离子平衡的能力的季节性变化有关。实际上,夏季捕获的苍蝇耐寒性较差,这些苍蝇暴露于零下温度下会导致血淋巴水流失,并增加了血淋巴中K + 的浓度(如实验室饲养的昆虫)。在早春捕获的更多耐寒果蝇中未观察到这种离子和水平衡破坏的模式。因此,我们在此基于实验室研究提供了假设的现场验证,并得出结论,维持离子稳态的能力对于自由放养昆虫应对寒冷的能力很重要。

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