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首页> 外文期刊>The New Phytologist >The thylakoid protease Deg2 is involved in stress-related degradation of the photosystem II light-harvesting protein Lhcb6 in Arabidopsis thaliana.
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The thylakoid protease Deg2 is involved in stress-related degradation of the photosystem II light-harvesting protein Lhcb6 in Arabidopsis thaliana.

机译:类囊体蛋白酶Deg2参与了拟南芥光系统II采光蛋白Lhcb6的应激相关降解。

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摘要

The thylakoid protease Deg2 is a serine-type protease peripherally attached to the stromal side of the thylakoid membrane. Given the lack of knowledge concerning its function, two T-DNA insertion lines devoid of Deg2 were prepared to study the functional importance of this protease in Arabidopsis thaliana. The phenotypic appearance of deg2 mutants was studied using a combination of stereo and transmission electron microscopy, and short-stress-mediated degradation of apoproteins of minor light-harvesting antennae of photosystem II (PSII) was analysed by immunoblotting in the mutants in comparison with wild-type plants. Deg2 repression produced a phenotype in which reduced leaf area and modified chloroplast ultrastructure of older leaves were the most prominent features. In contrast to the wild type, the chloroplasts of second-whorl leaves of 4-wk-old deg2 mutants did not display features typical of the early senescence phase, such as undulation of the chloroplast envelope and thylakoids. The ability to degrade the photosystem II light-harvesting protein Lhcb6 apoprotein in response to brief high-salt, wounding, high-temperature and high-irradiance stress was demonstrated to be impaired in deg2 mutants. Our results suggest that Deg2 is required for normal plant development, including the chloroplast life cycle, and has an important function in the degradation of Lhcb6 in response to short-duration stresses.
机译:类囊体蛋白酶Deg2是外围附着于类囊体膜的基质侧的丝氨酸型蛋白酶。由于缺乏有关其功能的知识,准备了两个不含Deg2的T-DNA插入系来研究该蛋白酶在拟南芥中的功能重要性。使用立体和透射电子显微镜研究了 deg2 突变体的表型外观,并通过免疫印迹分析了光系统II(PSII)的次要光触角触角的载脂蛋白的短应力介导降解与野生型植物相比,突变体中的氨基酸含量更高。 Deg2抑制产生了一个表型,其中叶面积减少和老叶叶绿体超微结构的改变是最突出的特征。与野生型相反,具有4周龄的 deg2 突变体的第二叶片叶绿体没有显示出早期衰老期的典型特征,例如叶绿体包膜和类囊体的起伏。事实证明,在 deg2 突变体中,光系统II的光收集蛋白Lhcb6载脂蛋白对短暂的高盐,创伤,高温和高辐照胁迫的降解能力受到损害。我们的结果表明,Deg2是正常植物发育(包括叶绿体生命周期)所必需的,并且在响应短期胁迫时,在Lhcb6的降解中具有重要作用。

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