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首页> 外文期刊>Photosynthesis Research >Non-photochemical chlorophyll fluorescence quenching and structural rearrangements induced by low pH in intact cells of Chlorella fusca (Chlorophyceae) and Mantoniella squamata (Prasinophyceae)
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Non-photochemical chlorophyll fluorescence quenching and structural rearrangements induced by low pH in intact cells of Chlorella fusca (Chlorophyceae) and Mantoniella squamata (Prasinophyceae)

机译:低pH诱导小球藻(Chlorophyceae)和鳞球Mantoniella squamata(Prasinophyceae)完整细胞中的非光化学叶绿素荧光猝灭和结构重排

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We have used circular dichroism (CD) spectroscopy and chlorophyll fluorescence induction measurements in order to examine low-pH-induced changes in the chiral macro-organization of the chromophores and in the efficiency of non-photochemical quenching of the chlorophyll a fluorescence (NPQ) in intact, dark-adapted cells of Chlorella fusca (Chlorophyceae) and Mantoniella squamata (Prasinophyceae). We found that: (i) high proton concentrations enhanced the formation of chiral macrodomains of the complexes, i.e. the formation of large aggregates with long-range chiral order of pigment dipoles; this was largely independent of the low-pH-induced accumulation of de-epoxidized xanthophylls; (ii) lowering the pH led to NPQ; however, efficient energy dissipation, in the absence of excess light, could only be achieved if a substantial part of violaxanthin was converted to zeaxanthin and antheraxanthin in Chlorella and Mantoniella, respectively; (iii) the low-pH-induced changes in the chiral macro-organization of pigments were fully reversed by titrating the cells to neutral pH; (iv) at neutral pH, the presence of antheraxanthin or zeaxanthin did not bring about a sizeable NPQ. Hence, low-pH-induced NPQ in dark adapted algal cells appears to be associated both with the presence of de-epoxidized xanthophylls and structural changes in the chiral macrodomains. It is proposed that the macrodomains, by providing a suitable structure for long-distance migration of the excitation energy, in the presence of quenchers associated with de-epoxidized xanthophylls, facilitate significantly the dissipation of unused excitation energy.
机译:我们已经使用圆二色性(CD)光谱和叶绿素荧光诱导测量,以检查低pH诱导的生色团手性宏观组织的变化以及叶绿素a荧光(NPQ)的非光化学猝灭效率。在完整的,暗适应的小球藻(Chlorophyceae)和鳞球Mantoniella squamata(Prasinophyceae)细胞中。我们发现:(i)高质子浓度增强了配合物的手性大畴的形成,即,具有长距离手性的颜料偶极的大聚集体的形成;这在很大程度上与低pH诱导的去环氧化叶黄素的积累无关。 (ii)降低pH导致NPQ;然而,只有在紫藻黄素和曼通氏菌分别将大部分紫黄质转化为玉米黄质和花药黄质的情况下,才能在没有过量光的情况下实现有效的能量消散; (iii)通过将细胞滴定至中性pH,可以完全逆转低pH诱导的色素手性宏观组织的变化; (iv)在中性pH值下,花药黄素或玉米黄质的存在不会产生较大的NPQ。因此,在黑暗适应的藻类细胞中低pH诱导的NPQ似乎与脱环叶黄素的存在和手性大结构域的结构变化有关。提出通过在与脱环氧化的叶黄素相关的猝灭剂的存在下,通过提供用于激发能的长距离迁移的合适结构的大畴,显着促进了未使用激发能的耗散。

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