Molecular Evolution, Heinrich-Heine-University Düsseldorf, 40225, Düsseldorf, Germany.
Department of Biology and CESAM, University of Aveiro, 3810-193, Aveiro, Portugal.
New Phytol. 2017 May;214(3):1132-1144. doi: 10.1111/nph.14435. Epub 2017 Feb 2.
Phototrophic organisms need to ensure high photosynthetic performance whilst suppressing reactive oxygen species (ROS)-induced stress occurring under excess light conditions. The xanthophyll cycle (XC), related to the high-energy quenching component (qE) of the nonphotochemical quenching (NPQ) of excitation energy, is considered to be an obligatory component of photoprotective mechanisms. The pigment composition of at least one representative of each major clade of Ulvophyceae (Chlorophyta) was investigated. We searched for a light-dependent conversion of pigments and investigated the NPQ capacity with regard to the contribution of XC and the qE component when grown under different light conditions. A XC was found to be absent in a monophyletic group of Ulvophyceae, the Bryopsidales, when cultivated under low light, but was triggered in one of the 10 investigated bryopsidalean species, Caulerpa cf. taxifolia, when cultivated under high light. Although Bryopsidales accumulate zeaxanthin (Zea) under high-light (HL) conditions, NPQ formation is independent of a XC and not related to qE. qE- and XC-independent NPQ in the Bryopsidales contradicts the common perception regarding its ubiquitous occurrence in Chloroplastida. Zea accumulation in HL-acclimated Bryopsidales most probably represents a remnant of a functional XC. The existence of a monophyletic algal taxon that lacks qE highlights the need for broad biodiversity studies on photoprotective mechanisms.
光能利用生物需要在高光条件下抑制活性氧(ROS)诱导的应激,同时确保高效的光合作用。叶黄素循环(XC)与非光化学猝灭(NPQ)的高能猝灭组分(qE)有关,被认为是光保护机制的必需组成部分。我们调查了绿藻门(Chlorophyta)的每个主要分支的至少一个代表的色素组成。我们寻找色素的光依赖性转化,并研究了 NPQ 能力,以及在不同光照条件下 XC 和 qE 组分的贡献。在低光照下,发现 Bryopsidales 中的一个单系绿藻门组没有 XC,但在 10 种研究的 Bryopsidales 物种之一的 Caulerpa cf. taxifolia 中,当在高光下培养时,XC 被触发。尽管 Bryopsidales 在高光(HL)条件下积累玉米黄质(Zea),但 NPQ 的形成不依赖于 XC,也与 qE 无关。在 Bryopsidales 中,qE 和 XC 独立的 NPQ 与在 Chloroplastida 中普遍存在的观念相矛盾。在 HL 适应的 Bryopsidales 中 Zea 的积累很可能代表了功能性 XC 的残余。一个单系藻类分类群缺乏 qE 的存在突出表明需要对光保护机制进行广泛的生物多样性研究。