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Ice Encasement Injury to Microsomal Membranes from Winter Wheat Crowns 1: I. Comparison of Membrane Properties after Lethal Ice Encasement and during a Post-Thaw Period

机译:冰包对冬小麦冠的微粒体膜的伤害1:I.致死冰包后和解冻后的膜特性比较

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摘要

The functional and physical properties of cellular membranes isolated from Triticum aestivum, cvs Norstar and Fredrick, were altered coincident with changes in composition after a lethal ice-encasement stress and further during a 6 hour post-thaw period. Crowns encased in ice for a duration which inhibited regrowth, exhibited enhanced rates of electrolyte leakage. Furthermore, the recovery of total microsomal protein and phospholipid declined, suggesting that some membrane degradation had been induced during the anoxic stress. The microviscosity of microsomes and liposomes prepared from such membranes increased during stress, and this was correlated with a 2- to 4-fold increase in the free fatty acid levels in the microsomal fraction. There was, however, only a relatively minor change in fatty acid unsaturation during the ice-encasement stress. The process continued during a 6 hour aerobic post-thaw treatment, but the pattern was somewhat different. During this phase, the leakage of electrolytes was further increased and the recovery of microsomal protein and phospholipid continued to decline, indicating general degradation; but, in contrast to the anoxic phase, the degree of fatty acid unsaturation declined markedly, indicating lipid peroxidation.
机译:从致死的冰封应力后和进一步的解冻后6小时内,从小麦,cvs Norstar和Fredrick分离的细胞膜的功能和物理性质发生了变化,与组成的变化相符。将冠包裹在冰中的时间长短会抑制再生,表现出增加的电解质泄漏率。此外,总微粒体蛋白和磷脂的回收率下降,表明在缺氧胁迫期间已经诱导了一些膜降解。由此类膜制备的微粒体和脂质体的微粘度在应激过程中增加,这与微粒体级分中游离脂肪酸水平增加2至4倍相关。然而,在覆冰胁迫期间,脂肪酸不饱和度仅有相对较小的变化。该过程在6小时的有氧融化后处理中继续进行,但是模式有所不同。在此阶段,电解质的泄漏进一步增加,微粒体蛋白和磷脂的回收率继续下降,表明总体降解。但是,与缺氧相相反,脂肪酸不饱和度明显降低,表明脂质过氧化。

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