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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Cold hardiness and deacclimation of overwintering Papilio zelicaon pupae
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Cold hardiness and deacclimation of overwintering Papilio zelicaon pupae

机译:越冬Papilio zelicaon de的抗寒性和去驯化

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Seasonally-acquired cold tolerance can be reversed atwarm temperatures, leaving temperate ectotherms vulnerable to cold snaps. However, deacclimation, and its underlying mechanisms, has not been well-explored in insects. Swallowtail butterflies are widely distributed but in some cases their range is limited by low temperature and their cold tolerance is seasonally acquired, implying that they experience mortality resulting from deacclimation. We investigated cold tolerance and hemolymph composition of Anise swallowtail (Papilio zelicaon) pupae during overwintering in the laboratory, and after four days exposure to warm temperatures in spring. Overwintering pupae had supercooling points around ?20.5 °C and survived brief exposures to ?30 °C, suggesting partial freeze tolerance. Overwintering pupae had hemolymph osmolality of approximately 920 mOsm, imparted by high concentrations of glycerol, K~+ and Na~+. After exposure to spring warming, supercooling points increased to approximately ?17 °C, and survival of a 1 h exposure to ?20 °C decreased from100% to 0%. This deacclimationwas associatedwith decreased hemolymph osmolality and reduced glycerol, trehalose, Na~+ and Ca~(2+) concentrations.We compared cold tolerance of pupae toweather conditions at and beyond the species' northern range boundary. Minimum temperatures at the range boundary approached the lower lethal temperature of pupae, and were colder north of the range, suggesting that cold hardiness may set northern range limits. Minimum temperatures following warm snaps were likely to cause mortality in at least one of the past three years. Cold snaps in the spring are increasing in frequency as a result of global climate change, so are likely to be a significant source of mortality for this species, and other temperate ectotherms.
机译:季节性获得的耐寒性可以在温暖的温度下逆转,使温带等温线易受冷折的影响。但是,在昆虫中尚未充分探索去驯化及其潜在机制。燕尾蝶分布广泛,但在某些情况下其范围受到低温的限制,并且其耐寒性是季节性获得的,这意味着它们会因去适应而死亡。我们在实验室越冬期间,以及春季春季暴露于高温下四天后,研究了八角燕尾(Papilio zelicaon)p的耐寒性和血液淋巴成分。越冬p的过冷点约为20.5°C,在短暂暴露于30°C后仍能幸存,这表明其具有部分耐冻性。越冬的had具有较高的甘油,K〜+和Na〜+浓度,其血淋巴渗透压浓度约为920 mOsm。暴露于春季变暖后,过冷点增加至约17°C,暴露于20°C下1小时的存活率从100%降低至0%。这种去驯化与降低血淋巴渗透压,降低甘油,海藻糖,Na〜+和Ca〜(2+)浓度有关。我们比较了northern在该物种北部范围边界及以后对天气条件的耐寒性。范围边界的最低温度接近of的较低致死温度,并且在该范围以北较冷,这表明抗寒性可能会确定北部范围的极限。暖潮后的最低温度可能会导致过去三年中至少一年的死亡。由于全球气候变化,春季的寒潮频率增加,因此很可能成为该物种和其他温带等温线死亡的重要来源。

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