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Diapause induces remodelling of the fatty acid composition of membrane and storage lipids in overwintering larvae of Ostrinia nubilalis, Hubn. (Lepidoptera: Crambidae)

机译:滞育诱导Ostrinia nubilalis,Hubn的越冬幼虫中膜和贮存脂质的脂肪酸组成的重塑。 (鳞翅目:Crambidae)

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摘要

Seasonal changes in the FA composition of triacylglycerols and phospholipids prepared from the whole body of non-diapausing and diapausing fifth instar larvae of Ostrinia nubilalis, Hubn. (Lepidoptera: Crambidae) were determined to evaluate the role of these lipids in diapause. Substantial changes in the FA composition of triacylglycerols and phospholipids were triggered by diapause development. This led to a significant increase in the overall FA unsaturation (UFAs/SFAs ratio), attributable to an increase in the relative proportion of MUFAs and the concomitant decrease in PUFAs and SFAs. In triacylglycerols, the significant changes in FAs composition is the result of an increase in the relative proportions of MUFAs, palmitoleic acid (16:1n-7) and oleic acid (18:1n-9), and a concomitant reduction in composition of SFAs and PUFAs, mainly palmitic acid (16:0) and linoleic acid (18:2n-6), respectively. Changes in the composition of phospholipids were more subtle with FAs contributing to the overall increase of FA unsaturation. Differential scanning calorimetry (DSC) analysis revealed that the melt transition temperatures of total lipids prepared from whole larvae, primarily attributable to the triacylglycerol component, were significantly lower during the time course of diapause compared with non-diapause. These observations were correlated to the FA composition of triacylglycerols, most likely enabling them to remain functional during colder winter conditions. We conclude that O. nubilalis undergoes remodelling of FA profiles of both energy storage triacylglycerols and membrane phospholipids as an element of its overwintering physiology which may improve the ability to cold harden during diapause.
机译:由不透尿和滞育的湖滨骨Ost的五龄幼虫的全身制备的三酰基甘油和磷脂的FA成分的季节性变化。确定了鳞翅目(鳞翅目:Crambidae)以评估这些脂质在滞育中的作用。滞育的发展触发了三酰基甘油和磷脂的脂肪酸成分的显着变化。由于MUFA的相对比例增加以及PUFA和SFA的减少,导致总FA饱和度(UFA / SFA比)显着增加。在三酰基甘油中,FAs组成的显着变化是由于MUFA,棕榈油酸(16:1n-7)和油酸(18:1n-9)的相对比例增加以及SFA组成的同时减少所致和PUFA,分别是棕榈酸(16:0)和亚油酸(18:2n-6)。磷脂的组成变化更细微,FA有助于FA不饱和度的整体增加。差示扫描量热法(DSC)分析显示,在滞育过程中,由整个幼虫制备的总脂质的熔融转变温度(主要归因于三酰基甘油组分)在非滞育期间显着降低。这些观察结果与三酰基甘油的FA成分相关,最有可能使它们在寒冷的冬季条件下保持功能。我们得出结论,O。nubilalis经历了能量储存三酰基甘油和膜磷脂的FA轮廓的重塑,以此作为其越冬生理的一个要素,这可能会提高滞育期间的冷硬化能力。

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