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Protein Dynamics in Thylakoids of the Desiccation-Tolerant Plant Boea hygroscopica during Dehydration and Rehydration

机译:脱水和复水过程中耐旱植物Boea hygroscopica类囊体的蛋白质动力学

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摘要

Plants of Boea hygroscopica F. Muell were dehydrated to 9% relative water content (RWC) by withholding water for 26 d, and afterward the plants were rehydrated. Leaves were taken from control plants after 7, 12, and 26 d from the beginning of dehydration, and after 6 and 48 h from rehydration. The RWC decreased by 80% during dehydration, but the leaves regained RWC with rehydration. Dehydrated plants showed lesser amounts of proteins, lipids, and chlorophyll, all of which increased following rewatering. The lipid-to-protein ratio, which decreased during dehydration, returned to control level after 48 h of rehydration. Thylakoid lipids were more unsaturated when RWC reached the value of 9%. EPR measurements of spin-labeled proteins showed the presence of three different groups of proteins with different mobility in thylakoid membranes. The rotational correlation time of groups 1 and 2 increased with dehydration and decreased upon rehydration, whereas group 3 showed little changes. Desiccation did not cause thylakoid swelling or breakage, but the membrane system assemblage showed changes in thylakoid stacking. After 48 h of rehydration the membrane system recovered completely the organization of the fully hydrated state, showing several well-defined and regularly distributed grana.
机译:通过保留水分26 d,将Boea hygroscopica F. Muell的植物脱水至9%相对含水量(RWC),然后将植物复水。从脱水开始的第7、12、26 d,再水化后的6和48 h后,从对照植物中摘取叶片。在脱水过程中,RWC降低了80%,但叶片在脱水后恢复了RWC。脱水的植物显示出较少量的蛋白质,脂质和叶绿素,在补水后所有这些蛋白质,脂质和叶绿素均增加。脱水过程中降低的脂质与蛋白质之比,在脱水后48小时后恢复至对照水平。当RWC达到9%时,类囊体脂质更加不饱和。旋转标记蛋白质的EPR测量显示类囊体膜中存在三组具有不同迁移率的蛋白质。第1组和第2组的旋转相关时间随脱水而增加,而在补液后减少,而第3组的旋转相关时间几乎没有变化。干燥没有引起类囊体肿胀或破裂,但膜系统的组装显示类囊体堆积的变化。再水化48小时后,膜系统完全恢复了完全水合状态的组织,显示出一些轮廓分明且规则分布的谷物。

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