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三角褐指藻中响应光胁迫的叶黄素循环

The xanthophyll cycle in diatom Phaeodactylum tricornutum in response to light stress.

作者信息

Kuczynska Paulina, Jemiola-Rzeminska Malgorzata, Nowicka Beatrycze, Jakubowska Agata, Strzalka Wojciech, Burda Kvetoslava, Strzalka Kazimierz

机构信息

Department of Plant Physiology and Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Gronostajowa 7, 30-387, Krakow, Poland.

Department of Plant Physiology and Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Gronostajowa 7, 30-387, Krakow, Poland; Malopolska Centre of Biotechnology, Jagiellonian University, Gronostajowa 7A, 30-387, Krakow, Poland.

出版信息

Plant Physiol Biochem. 2020 May 7;152:125-137. doi: 10.1016/j.plaphy.2020.04.043.

Abstract

Chosen aspects of the functioning of diadinoxanthin cycle in a model diatom Phaeodactylum tricornutum grown under low light conditions (LL) and under high light conditions (HL), which cause activation of violaxanthin cycle, were examined. Heterogeneity of the kinetics of diadinoxanthin ↔ diatoxanthin conversions regulated by de-epoxidase/epoxidase enzymes was detected. Three different rates of diadinoxanthin de-epoxidation (τ > 20 min, 5 min > τ > 1.5 min and τ ≤ 1 min) were observed. Appearance and contribution of these phases depended on the light conditions and xanthophylls subpopulations in membranes. Moreover, diadinoxanthin de-epoxidation was postulated to occur in darkness and its rate was estimated to be almost two times faster (τ ≈ 14 min) than diatoxanthin-epoxidation in LL- and HL-grown diatoms collected after the dark phase of the photoperiod and exposed to very high light and subsequent darkness. The level of lipid hydroperoxides and the expression of genes encoding xanthophyll cycle enzymes was measured. Our observations suggest that isoforms of these enzymes may participate in carotenoid synthesis or be exclusively involved in xanthophyll conversions. Violaxanthin cycle pigments present in HL-acclimated diatoms change thermodynamic properties of thylakoid membranes. Zeaxanthin is known to localize preferentially in the inner part of the lipid bilayer and diatoxanthin in its outer part. The different localization of these pigments probably decide about their complementary action in protection of the membranes against reactive oxygen species.

摘要

研究了在低光条件(LL)和高光条件(HL)下生长的模式硅藻三角褐指藻中,二异丁烯酸叶黄素循环功能的选定方面,高光条件会激活紫黄质循环。检测到由脱环氧化酶/环氧化酶调节的二异丁烯酸叶黄素↔二氧叶黄素转化动力学的异质性。观察到三种不同的二异丁烯酸叶黄素脱环氧化速率(τ>20分钟、5分钟>τ>1.5分钟和τ≤1分钟)。这些阶段的出现和贡献取决于光照条件和膜中叶黄素亚群。此外,推测二异丁烯酸叶黄素脱环氧化在黑暗中发生,其速率估计比在光周期黑暗阶段收集并暴露于非常高光和随后黑暗中的LL和HL生长硅藻中的二氧叶黄素环氧化快近两倍(τ≈14分钟)。测量了脂质氢过氧化物水平和编码叶黄素循环酶的基因表达。我们的观察结果表明,这些酶的同工型可能参与类胡萝卜素合成或仅参与叶黄素转化。适应高光的硅藻中存在的紫黄质循环色素会改变类囊体膜的热力学性质。已知玉米黄质优先定位于脂质双层的内部,而二氧叶黄素定位于其外部。这些色素的不同定位可能决定了它们在保护膜免受活性氧影响方面的互补作用。

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