紫黄素和环氧叶黄素对澳洲槲寄生的日同化反应

S. Matsubara, A. Gilmore, C. B. Osmond
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引用次数: 66

摘要

本研究对澳洲槲寄生叶绿体色素含量进行了研究。例进行筛选)。Tiegh。在白天期间在阳光和阴影适应叶片。淀粉样淀粉具有典型的高等植物补体新黄素、叶黄素循环色素、叶黄素、叶绿素a、叶绿素b和β胡萝卜素。大量的叶黄素环氧化物也存在。有趣的是,白天的光照会引起叶黄素环氧化物的减少,这与紫黄素的减少是平行的。与遮荫叶片相比,光照叶片环氧叶黄素和紫黄素含量降低,叶绿素a/b比值升高。显然,紫黄素和环氧叶黄素池对昼夜光照变化和遮阳驯化的响应是平行的,尽管在恢复特征上似乎存在一些差异。这些结果提出了一个问题,即叶黄素和叶黄素环氧化物循环是否可能为某些物种提供能量消耗的辅助手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diurnal and acclimatory responses of violaxanthin and lutein epoxide in the Australian mistletoe Amyema miquelii
This study investigated the chloroplast pigment content of the Australian mistletoe Amyema miquelii (Lehm. ex Miq.) Tiegh. over diurnal periods in sun- and shade-acclimated leaves. Amyema miquelii exhibited the typical higher plant complement of neoxanthin, the xanthophyll cycle pigments, lutein, chlorophylls a and b and β carotene. Substantial levels of lutein epoxide were also present. Interestingly, diurnal light exposure elicited a decrease in lutein epoxide that paralleled the decrease in violaxanthin. Compared with shade-acclimated leaves, sun leaves exhibited reduced lutein epoxide and violaxanthin levels and higher chlorophyll a/b ratios. It is clear that the pools of violaxanthin and lutein epoxide respond in parallel to both diurnal light changes and sun-shade acclimation, although there seemed to be some differences in the recovery characteristics. These results raise a question as to whether lutein and lutein epoxide cycling may provide an auxiliary means of energy dissipation for some species.
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