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首页> 外文期刊>Journal of Thermal Biology >Reprint of: Seasonal changes in the composition of storage and membrane lipids in overwintering larvae of the codling moth, Cydia pomonella
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Reprint of: Seasonal changes in the composition of storage and membrane lipids in overwintering larvae of the codling moth, Cydia pomonella

机译:转载:mo蛾越冬幼虫贮藏成分和膜脂的季节性变化

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The codling moth (Cydia pomonella) is a major insect pest of apples worldwide. It overwinters as a diapausing fifth instar larva. The overwintering is often a critical part of the insect life-cycle in temperate zone. This study brings detailed analysis of seasonal changes in lipid composition and fluidity in overwintering larvae sampled in the field. Fatty acid composition of triacylglycerol (TG) depots in the fat body and relative proportions of phospholipid (PL) molecular species in biological membranes were analyzed. In addition, temperature of melting (T-m) in TG depots was assessed by using differential scanning calorimetry and the conformational order (fluidity) of PL membranes was analyzed by measuring the anisotropy of fluorescence polarization of diphenylhexatriene probe in membrane vesicles. We observed a significant increase of relative proportion of linoleic acid (C18:2n6) at the expense of palmitic acid (C16:0) in TG depots during the larval transition to diapause accompanied with decreasing melting temperature of total lipids, which might increase the accessibility of depot fats for enzymatic breakdown during overwintering. The fluidity of membranes was maintained very high irrespective of developmental mode or seasonally changing acclimation status of larvae. The seasonal changes in PL composition were relatively small. We discuss these results in light of alternative survival strategies of codling moth larvae (supercooling vs. freezing), variability and low predictability of environmental conditions, and other cold tolerance mechanisms such as extending the supercooling capacity and massive accumulation of cryoprotective metabolites. (C) 2015 Published by Elsevier Ltd.
机译:d蛾(Cydia pomonella)是全世界苹果的主要害虫。它作为令人垂涎的五龄幼虫越冬。越冬通常是温带地区昆虫生命周期的关键部分。这项研究对野外取样的越冬幼虫的脂质组成和流动性的季节性变化进行了详细分析。分析了脂肪体中三酰基甘油(TG)库的脂肪酸组成和生物膜中磷脂(PL)分子种类的相对比例。另外,通过差示扫描量热法评估TG储库中的熔化温度(T-m),并通过测量膜囊泡中二苯基己三烯探针的荧光偏振各向异性来分析PL膜的构象顺序(流动性)。我们观察到,在幼虫过渡到滞育期间,TG库中亚油酸(C18:2n6)的相对比例显着增加,但以棕榈酸(C16:0)为代价,同时总脂质的熔化温度降低,这可能会增加可及性越冬期间用于酶促分解的仓库脂肪的数量。不管幼虫的发育方式或季节性变化的驯化状态如何,膜的流动性都保持很高。 PL成分的季节变化相对较小。我们根据co蛾幼虫的替代生存策略(过冷与冷冻),环境条件的可变性和低可预测性以及其他耐寒性机制(例如扩展过冷能力和冷冻保护代谢物的大量积累)来讨论这些结果。 (C)2015由Elsevier Ltd.出版

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