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首页> 外文期刊>Journal of Thermal Biology >Seasonal patterns of the thermal response in relation to sugar and polyol accumulation in overwintering adults of elm leaf beetle, Xanthogaleruca luteola (Coleoptera: Chrysomelidae)
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Seasonal patterns of the thermal response in relation to sugar and polyol accumulation in overwintering adults of elm leaf beetle, Xanthogaleruca luteola (Coleoptera: Chrysomelidae)

机译:榆叶甲虫Xanthogaleruca luteola越冬成虫中与糖和多元醇积累有关的热响应的季节性模式

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摘要

Elm leaf beetle, Xanthogaleruca luteola (Muller), is one of the key pests of elm trees that survive winter in reproductive diapause in sheltered locations. Overwintering adults of the elm leaf beetle showed a complex sugar/polyol cryoprotectant system. The major components of the multiple systems were glucose, myo-inositol and trehalose. In this study, we investigated the seasonal profile of low molecular weight compounds and glycogen in natural population and also in response to thermal constant regimes (5 and 15 degrees C). Among these components, a remarkable seasonal pattern of accumulation/depletion was observed in myo-inositol over the course of hibernation with the development of diapause progress. Incubating at 5 degrees C only elicited a strong response in myo-inositol synthesis during diapause. It suggests that the elm leaf beetle accumulates myo-inositol not only in relation to entering diapause but also in response to low temperatures and their interactions. The laboratory acclimation experiments showed that adults exposed to 15 degrees C had no chance for accumulation of low molecular weight carbohydrate even during diapause. The results of this study illustrated that overwintering adults of elm leaf beetle produce myo-inositol as the primary substance which plays a specific role in some biochemical adjustments in overwintering adults of X. luteola
机译:榆叶甲虫Xanthogaleruca luteola(Muller)是榆树的主要害虫之一,它们在庇护所的地方因繁殖滞育而在冬季生存。榆叶甲虫越冬成虫表现出复杂的糖/多元醇防冻剂系统。多个系统的主要成分是葡萄糖,肌醇和海藻糖。在这项研究中,我们调查了自然种群中低分子量化合物和糖原的季节性变化,以及对热恒定状态(5和15摄氏度)的响应。在这些成分中,随着滞育进程的发展,在冬眠过程中,肌醇中观察到了明显的累积/消耗季节性模式。在滞育过程中,在5摄氏度下孵育只会引起肌醇合成的强烈反应。这表明榆叶甲虫不仅在进入滞育期而且在对低温及其相互作用的响应中积累肌醇。实验室适应性实验表明,即使在滞育期间,暴露于15摄氏度的成年人也没有机会积累低分子量碳水化合物。这项研究的结果表明,越冬的榆树甲虫成虫产生的肌醇是主要物质,它在X. luteola越冬成虫的某些生化调节中起特定作用。

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