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绿藻(绿藻门)中的叶黄素循环:其在光合机构中的作用。

The xanthophyll cycle in green algae (chlorophyta): its role in the photosynthetic apparatus.

作者信息

Masojídek J, Kopecký J, Koblízek M, Torzillo G

机构信息

Institute of Microbiology, Academy of Sciences, Opatovický mlýn, 37981 Trebon, Czech Republic.

出版信息

Plant Biol (Stuttg). 2004 May;6(3):342-9. doi: 10.1055/s-2004-820884.

Abstract

Light-dependent conversion of violaxanthin to zeaxanthin, the so-called xanthophyll cycle, was shown to serve as a major, short-term light acclimation mechanism in higher plants. The role of xanthophylls in thermal dissipation of surplus excitation energy was deduced from the linear relationship between zeaxanthin formation and the magnitude of non-photochemical quenching. Unlike in higher plants, the role of the xanthophyll cycle in green algae (Chlorophyta) is ambiguous, since its contribution to energy dissipation can significantly vary among species. Here, we have studied the role of the xanthophyll cycle in the adaptation of several species of green algae (Chlorella, Scenedesmus, Haematococcus, Chlorococcum, Spongiochloris) to high irradiance. The xanthophyll cycle has been found functional in all tested organisms; however its contribution to non-photochemical quenching is not as significant as in higher plants. This conclusion is supported by three facts: (i) in green algae the content of zeaxanthin normalized per chlorophyll was significantly lower than that reported from higher plants, (ii) antheraxanthin + zeaxanthin content displayed different diel kinetics from NPQ and (iii) in green algae there was no such linear relationship between NPQ and Ax + Zx, as found in higher plants. We assume that microalgae rely on other dissipation mechanism(s), which operate along with xanthophyll cycle-dependent quenching.

摘要

叶黄素循环即紫黄质向玉米黄质的光依赖型转化,被证明是高等植物中一种主要的短期光适应机制。叶黄素在过剩激发能的热耗散中的作用是根据玉米黄质形成与非光化学猝灭程度之间的线性关系推断出来的。与高等植物不同,叶黄素循环在绿藻(绿藻门)中的作用尚不明确,因为其对能量耗散的贡献在不同物种间差异很大。在此,我们研究了叶黄素循环在几种绿藻(小球藻、栅藻、红球藻、绿球藻、海绵氯藻)适应高光强过程中的作用。已发现叶黄素循环在所有受试生物中都发挥作用;然而,其对非光化学猝灭的贡献不如在高等植物中显著。这一结论得到三个事实的支持:(i)在绿藻中,以叶绿素标准化的玉米黄质含量显著低于高等植物报道的含量,(ii)环氧玉米黄质+玉米黄质含量显示出与非光化学猝灭不同的昼夜动力学,(iii)在绿藻中,非光化学猝灭与环氧玉米黄质+玉米黄质之间不存在高等植物中那样的线性关系。我们推测微藻依赖于其他耗散机制,这些机制与叶黄素循环依赖性猝灭共同起作用。

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