Department of Plant Biology and Ecology, University of the Basque Country (UPV/EHU), Apdo 644, 48080, Bilbao, Spain.
Photosynth Res. 2012 Sep;113(1-3):89-103. doi: 10.1007/s11120-012-9760-7. Epub 2012 Jul 8.
Thermal dissipation of excitation energy is a fundamental photoprotection mechanism in plants. Thermal energy dissipation is frequently estimated using the quenching of the chlorophyll fluorescence signal, termed non-photochemical quenching. Over the last two decades, great progress has been made in the understanding of the mechanism of thermal energy dissipation through the use of a few model plants, mainly Arabidopsis. Nonetheless, an emerging number of studies suggest that this model represents only one strategy among several different solutions for the environmental adjustment of thermal energy dissipation that have evolved among photosynthetic organisms in the course of evolution. In this review, a detailed analysis of three examples highlights the need to use models other than Arabidopsis: first, overwintering evergreens that develop a sustained form of thermal energy dissipation; second, desiccation tolerant plants that induce rapid thermal energy dissipation; and third, understorey plants in which a complementary lutein epoxide cycle modulates thermal energy dissipation. The three examples have in common a shift from a photosynthetically efficient state to a dissipative conformation, a strategy widely distributed among stress-tolerant evergreen perennials. Likewise, they show a distinct operation of the xanthophyll cycle. Expanding the list of model species beyond Arabidopsis will enhance our knowledge of these mechanisms and increase the synergy of the current studies now dispersed over a wide number of species.
激发态能量的热耗散是植物中一种基本的光保护机制。热能耗散通常通过叶绿素荧光信号的猝灭来估计,称为非光化学猝灭。在过去的二十年中,通过使用少数模式植物(主要是拟南芥),在理解热能耗散机制方面取得了很大进展。然而,越来越多的研究表明,这种模式仅代表了在进化过程中光合生物为适应环境而进化出的几种不同的热能耗散解决方案之一。在这篇综述中,通过三个例子的详细分析,强调了需要使用除拟南芥以外的模型:首先,是常绿越冬植物,它们形成一种持续的热能耗散形式;其次,是耐旱植物,它们会迅速诱导热能耗散;第三,是林下植物,其中叶黄素环的加合物循环调节热能耗散。这三个例子的共同点是从高效光合作用状态转变为耗散构象,这是一种在抗逆性常绿多年生植物中广泛分布的策略。同样,它们显示出叶黄素循环的明显作用。将模型物种的列表扩展到拟南芥以外,将增强我们对这些机制的认识,并增加目前分散在许多物种中的研究的协同作用。