首页> 外文期刊>The Journal of Experimental Biology >Repeated freezing induces a trade-off between cryoprotection and egg production in the goldenrod gall fly, Eurosta solidaginis
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Repeated freezing induces a trade-off between cryoprotection and egg production in the goldenrod gall fly, Eurosta solidaginis

机译:反复冻结在Goldenrod Gall Fly,Eurosta SolidaGinis的GoldreOrcotection和Goldrop Call Fly中的冷冻保护和鸡蛋生产之间进行折衷

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摘要

Internal ice formation leads to wholesale changes in ionic, osmotic and pH homeostasis, energy metabolism, and mechanical damage, across a small range of temperatures, and is thus an abiotic stressor that acts at a distinct, physiologically relevant, threshold. Insects that experience repeated freeze-thaw cycles over winter will cross this stressor threshold many times over their lifespan. Here, we examined the effect of repeatedly crossing the freezing threshold on short-term physiological parameters (metabolic reserves and cryoprotectant concentration) as well as long-term fitness-related performance (survival and egg production) in the freeze-tolerant goldenrod gall fly, Eurosta solidaginis. We exposed overwintering prepupae to a series of low temperatures (-10, -15 or -20 degrees C) with increasing numbers of freezing events (3, 6 or 10) with differing recovery periods between events (1, 5 or 10 days). Repeated freezing increased sorbitol concentration by about 50% relative to a single freezing episode, and prompted prepupae to modify long-chain triacylglycerols to acetylated triacylglycerols. Long-term, repeated freezing did not significantly reduce survival but did reduce egg production by 9.8% relative to a single freezing event. Exposure temperature did not affect any of these measures, suggesting that threshold crossing events may be more important to fitness than the intensity of stress in overwintering E. solidaginis.
机译:内部冰形成导致离子,渗透性和pHoosoTasis,能量代谢和机械损伤的批发变化,因此是一种非生物胁迫源,其在不同的生理学相关的阈值下起作用。在冬季经历重复的冻融周期的昆虫将多次在其寿命上越过这种压力源。在此,我们检查了反复交叉冻结阈值对短期生理参数(代谢储备和冷冻保护剂浓度)以及冷冻耐热的Goldenrod Gall Fly中的长期健身相关性能(存活和鸡蛋生产), Eurosta solidaginis。我们暴露于一系列低温(-10,-15或-20℃)的次次冬次,随着冻结事件(3,6或10)的数量,事件(1,5或10天)之间的恢复时间不同。相对于单次冻结发作,重复将山梨糖醇浓度增加约50%,并促使预备将长链三酰基甘油改变为乙酰化三酰基甘油。长期,反复冻结没有显着减少存活率,但相对于一个冻结事件,确实将鸡蛋产量降低了9.8%。曝光温度不影响这些措施中的任何一种,表明阈值交叉事件可能比在越冬E. solidAginis中的应激强度更重要。

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