首页> 美国卫生研究院文献>Plant Physiology >Greening under High Light or Cold Temperature Affects the Level of Xanthophyll-Cycle Pigments Early Light-Inducible Proteins and Light-Harvesting Polypeptides in Wild-Type Barley and the Chlorina f2 Mutant
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Greening under High Light or Cold Temperature Affects the Level of Xanthophyll-Cycle Pigments Early Light-Inducible Proteins and Light-Harvesting Polypeptides in Wild-Type Barley and the Chlorina f2 Mutant

机译:高光或低温下的绿化影响水平 叶黄素周期色素早期光诱导性蛋白质的含量以及 野生型大麦及其中的聚光多肽 绿藻f2突变体

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摘要

Etiolated seedlings of wild type and the chlorina f2 mutant of barley (Hordeum vulgare) were exposed to greening at either 5°C or 20°C and continuous illumination varying from 50 to 800 μmol m−2 s−1. Exposure to either moderate temperature and high light or low temperature and moderate light inhibited chlorophyll a and b accumulation in the wild type and in the f2 mutant. Continuous illumination under these greening conditions resulted in transient accumulations of zeaxanthin, concomitant transient decreases in violaxanthin, and fluctuations in the epoxidation state of the xanthophyll pool. Photoinhibition-induced xanthophyll-cycle activity was detectable after only 3 h of greening at 20°C and 250 μmol m−2 s−1. Immunoblot analyses of the accumulation of the 14-kD early light-inducible protein but not the major (Lhcb2) or minor (Lhcb5) light-harvesting polypeptides demonstrated transient kinetics similar to those observed for zeaxanthin accumulation during greening at either 5°C or 20°C for both the wild type and the f2 mutant. Furthermore, greening of the f2 mutant at either 5°C or 20°C indicated that Lhcb2 is not essential for the regulation of the xanthophyll cycle in barley. These results are consistent with the thesis that early light-inducible proteins may bind zeaxanthin as well as other xanthophylls and dissipate excess light energy to protect the developing photosynthetic apparatus from excess excitation. We discuss the role of energy balance and photosystem II excitation pressure in the regulation of the xanthophyll cycle during chloroplast biogenesis in wild-type barley and the f2 mutant.
机译:大麦(大麦)的黄化野生型幼苗和绿藻的chloroina f2突变株在5°C或20°C暴露于绿化下,并在50至800μmolm −2 s < sup> -1 。暴露于中等温度和高光或低温和中度光会抑制野生型和f2突变体中的叶绿素a和b积累。在这些绿化条件下连续照射会导致玉米黄质的短暂积累,紫黄质的伴随短暂减少和叶黄素池的环氧化状态的波动。在20°C和250μmolm -2 s -1 下仅绿化3小时后,即可检测到光抑制诱导的叶黄素循环活性。对14-kD早期光诱导蛋白的积累进行免疫印迹分析,但对主要(Lhcb2)或次要(Lhcb5)光捕获多肽的积累进行的免疫印迹分析表明,瞬态动力学与在任一处绿化期间玉米黄质积累所观察到的瞬态动力学相似。 野生型和f2均为5°C或20°C 突变体。此外,f2突变体在任一处均绿化 5°C或20°C表示Lhcb2对 大麦叶黄素循环的调控。这些结果是 与早期的光诱导蛋白可能结合的观点一致 玉米黄质和其他叶黄素并消散过多的光 能量来保护发育中的光合作用设备免于过量 激发。我们讨论能量平衡和光系统的作用II 在调节叶黄素循环过程中的激发压力 野生型大麦和f2的叶绿体生物发生 突变体。

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