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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >High-light vs. low-light: Effect of light acclimation on photosystem II composition and organization in Arabidopsis thaliana
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High-light vs. low-light: Effect of light acclimation on photosystem II composition and organization in Arabidopsis thaliana

机译:强光与弱光:光适应对拟南芥光系统II组成和组织的影响

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The structural response of photosystem II (PSII) and its light-harvesting proteins (LHCII) in Arabidopis thaliana after long-term acclimation to either high or low light intensity was characterized. Biochemical and structural analysis of isolated thylakoid membranes by electron microscopy indicates a distinctly different response at the level of PSII and LHCII upon plant acclimation. In high light acclimated plants, the C2S 2M2 supercomplex, which is the dominating form of PSII in Arabidopsis, is a major target of structural re-arrangement due to the down-regulation of Lhcb3 and Lhcb6 antenna proteins. The PSII ability to form semi-crystalline arrays in the grana membrane is strongly reduced compared to plants grown under optimal light conditions. This is due to the structural heterogeneity of PSII supercomplexes rather than to the action of PsbS protein as its level was unexpectedly reduced in high light acclimated plants. In low light acclimated plants, the architecture of the C2S 2M2 supercomplex and its ability to form semi-crystalline arrays remained unaffected but the density of PSII in grana membranes is reduced due to the synthesis of additional LHCII proteins. However, the C 2S2M2 supercomplexes in semi-crystalline arrays are more densely packed, which can be important for efficient energy transfer between PSII under light limiting conditions. ? 2013 Elsevier B.V.
机译:长期适应高光强度或低光强度后,对拟南芥中光系统II(PSII)及其光捕获蛋白(LHCII)的结构响应进行了表征。通过电子显微镜对分离的类囊体膜进行生化和结构分析表明,植物适应后,在PSII和LHCII水平上的响应明显不同。在适应强光的植物中,由于Lhcb3和Lhcb6天线蛋白的下调,C2S 2M2超复合物是拟南芥PSII的主要形式,是结构重排的主要目标。与在最佳光照条件下生长的植物相比,PSII在颗粒膜中形成半晶体阵列的能力大大降低。这是由于PSII超复合物的结构异质性,而不是由于PsbS蛋白的作用,因为在高光适应植物中其水平出乎意料地降低了。在适应弱光的植物中,C2S 2M2超复合物的体系结构及其形成半晶状阵列的能力保持不变,但由于合成了其他LHCII蛋白,谷物膜中PSII的密度降低了。但是,半晶体阵列中的C 2S2M2超复合物堆积得更紧密,这对于光限制条件下PSII之间的有效能量转移可能很重要。 ? 2013 Elsevier B.V.

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