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拟南芥(C3)和玉米(C4)叶绿体对红光和远红光的短期反应。

The short-term response of Arabidopsis thaliana (C3) and Zea mays (C4) chloroplasts to red and far red light.

作者信息

Zienkiewicz Maksymilian, Drożak Anna, Wasilewska Wioleta, Bacławska Ilona, Przedpełska-Wąsowicz Ewa, Romanowska Elżbieta

机构信息

Department of Molecular Plant Physiology, Faculty of Biology, University of Warsaw, Miecznikowa 1, 02-096, Warsaw, Poland.

出版信息

Planta. 2015 Dec;242(6):1479-93. doi: 10.1007/s00425-015-2392-3. Epub 2015 Aug 30.

Abstract

Light quality has various effects on photochemistry and protein phosphorylation in Zea mays and Arabidopsis thaliana thylakoids due to different degrees of light penetration across leaves and redox status in chloroplasts. The effect of the spectral quality of light (red, R and far red, FR) on the function of thylakoid proteins in Zea mays and Arabidopsis thaliana was investigated. It was concluded that red light stimulates PSII activity in A. thaliana thylakoids and in maize bundle sheath (BS) thylakoids, but not in mesophyll (M) thylakoids. The light quality did not change PSI activity in M thylakoids of maize. FR used after a white light period increased PSI activity significantly in maize BS and only slightly in A. thaliana thylakoids. As shown by blue native (BN)-PAGE followed by SDS-PAGE, proteins were differently phosphorylated in the thylakoids, indicating their different functions. FR light increased dephosphorylation of LHCII proteins in A. thaliana thylakoids, whereas in maize, dephosphorylation did not occur at all. The rate of phosphorylation was higher in maize BS than in M thylakoids. D1 protein phosphorylation increased in maize and decreased in A. thaliana upon irradiation with both R and growth light (white light, W). Light variations did not change the level of proteins in thylakoids. Our data strongly suggest that response to light quality is a species-dependent phenomenon. We concluded that the maize chloroplasts were differently stimulated, probably due to different degrees of light penetration across the leaf and thereby the redox status in the chloroplasts. These acclimation changes induced by light quality are important in the regulation of chloroplast membrane flexibility and thus its function.

摘要

由于光穿过叶片的程度不同以及叶绿体中的氧化还原状态不同,光质对玉米和拟南芥类囊体中的光化学和蛋白质磷酸化有多种影响。研究了光的光谱质量(红光,R和远红光,FR)对玉米和拟南芥类囊体蛋白功能的影响。得出的结论是,红光刺激拟南芥类囊体和玉米维管束鞘(BS)类囊体中的PSII活性,但不刺激叶肉(M)类囊体中的PSII活性。光质并未改变玉米M类囊体中的PSI活性。在白光照射后使用的FR显著增加了玉米BS中的PSI活性,而在拟南芥类囊体中仅略有增加。如蓝色非变性(BN)-PAGE随后进行SDS-PAGE所示,类囊体中的蛋白质磷酸化情况不同,表明它们具有不同的功能。FR光增加了拟南芥类囊体中LHCII蛋白的去磷酸化,而在玉米中,根本没有发生去磷酸化。玉米BS中的磷酸化速率高于M类囊体。在用R光和生长光(白光,W)照射后,玉米中的D1蛋白磷酸化增加,而拟南芥中的D1蛋白磷酸化减少。光照变化并未改变类囊体中蛋白质的水平。我们的数据强烈表明,对光质的反应是一种物种依赖的现象。我们得出结论,玉米叶绿体受到的刺激不同,可能是由于光穿过叶片的程度不同,从而导致叶绿体中的氧化还原状态不同。光质引起的这些适应性变化在调节叶绿体膜的柔韧性及其功能方面很重要。

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