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叶黄素环氧化循环的运转与能量耗散相关。

The operation of the lutein epoxide cycle correlates with energy dissipation.

作者信息

García-Plazaola José I, Hernández Antonio, Olano José M, Becerril José M

机构信息

Departamento Biología Vegetal y Ecología, Universidad del País Vasco, Apdo 644, E-48080 Bilbao, Spain. Corresponding author; email:

Departamento Biología Vegetal y Ecología, Universidad del País Vasco, Apdo 644, E-48080 Bilbao, Spain.

出版信息

Funct Plant Biol. 2003 Mar;30(3):319-324. doi: 10.1071/FP02224.

Abstract

A new xanthophyll cycle involving de-epoxidation of lutein epoxide (Lx) into lutein in the light and epoxidation back in the dark has been recently described in parasitic plants and in trees from the genus Quercus. To explore the role of the Lx cycle in photoprotection, shade leaves of red oak (Q. rubra), with a relatively high Lx pool, were exposed to different light intensities. Both violaxanthin and Lx were de-epoxidised to the same extent, although the initial kinetics differed, with a rate proportional to the light intensity. De-epoxidation of violaxanthin and Lx was inhibited by dithiothreitol, suggesting that the same enzyme, violaxanthin de-epoxidase (VDE), catalyses both reactions. Dark recovery lagged in the case of Lx, and after 5 h in darkness, the Lx cycle was much more de-epoxidised than the violaxanthin cycle. The different rates of epoxidation of the violaxanthin and Lx cycles were used to study the role of the Lx cycle in photoprotection. Statistical approaches (partial correlation and multiple regression) indicate that in these leaves, maximal photochemical efficiency of PSII (F/F) and non-photochemical quenching are correlated with the level of Lx de-epoxidation. The potential implications of this finding for the understanding of the photosynthetic process in shaded and understorey leaves are discussed.

摘要

最近在寄生植物和栎属树木中发现了一种新的叶黄素循环,该循环涉及叶黄素环氧化合物(Lx)在光照下脱环氧化为叶黄素,并在黑暗中重新环氧化。为了探究Lx循环在光保护中的作用,将具有相对较高Lx库的红栎(Q. rubra)遮荫叶片暴露于不同光强下。尽管初始动力学不同,但紫黄质和Lx的脱环氧化程度相同,其速率与光强成正比。二硫苏糖醇抑制了紫黄质和Lx的脱环氧化,这表明同一种酶,即紫黄质脱环氧化酶(VDE)催化这两个反应。Lx的暗恢复滞后,在黑暗中5小时后,Lx循环的脱环氧化程度比紫黄质循环高得多。利用紫黄质和Lx循环不同的环氧化速率来研究Lx循环在光保护中的作用。统计方法(偏相关和多元回归)表明,在这些叶片中,PSII的最大光化学效率(F/F)和非光化学猝灭与Lx的脱环氧化水平相关。讨论了这一发现对理解遮荫和林下叶片光合作用过程的潜在意义。

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