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Compensation Mechanism of the Photosynthetic Apparatus in

机译:光合仪器的补偿机制

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摘要

The origin of chlorophyll b deficiency is a mutation (ch1) in chlorophyllide a oxygenase (CAO), the enzyme responsible for Chl b synthesis. Regulation of Chl b synthesis is essential for understanding the mechanism of plant acclimation to various conditions. Therefore, the main aim of this study was to find the strategy in plants for compensation of low chlorophyll content by characterizing and comparing the performance and spectral properties of the photosynthetic apparatus related to the lipid and protein composition in four selected Arabidopsis ch1 mutants and two Arabidopsis ecotypes. Mutation in different loci of the CAO gene, viz., NW41, ch1.1, ch1.2 and ch1.3, manifested itself in a distinct chlorina phenotype, pigment and photosynthetic protein composition. Changes in the CAO mRNA levels and chlorophyllide a (Chlide a) content in ecotypes and ch1 mutants indicated their significant role in the adjustment mechanism of the photosynthetic apparatus to low-light conditions. Exposure of mutants with a lower chlorophyll b content to short-term (1LL) and long-term low-light stress (10LL) enabled showing a shift in the structure of the PSI and PSII complexes via spectral analysis and the thylakoid composition studies. We demonstrated that both ecotypes, Col-1 and Ler-0, reacted to high-light (HL) conditions in a way remarkably resembling the response of ch1 mutants to normal (NL) conditions. We also presented possible ways of regulating the conversion of chlorophyll a to b depending on the type of light stress conditions.
机译:叶绿素B缺乏的起源是氯化氢氧化物(CaO)中的突变(CH1),该酶负责CHL B合成的酶。 CHL B合成的调节对于了解植物适应对各种条件的机制至关重要。因此,本研究的主要目的是通过表征和比较四种选定的拟南芥CH1突变体和两种拟南芥的脂质和蛋白质组合物相关的光合装置的性能和光谱性能来找到植物植物的策略。生态型。 CaO基因,Ziz的不同基因座中的突变,NW41,CH1.1,CH1.2和CH1.3,以不同的氯那表型,颜料和光合蛋白质组成表现出来。在生态型和CH1突变体中的CaO mRNA水平和氯化物A(克隆A)含量的变化表明它们在光合仪的调节机制到低光条件下的显着作用。使叶绿素B含量的突变体暴露于短期(1LL)和长期低光应力(10L1),其通过光谱分析和囊体组合研究显示PSI和PSII复合物的结构的偏移。我们证明了生态型,COL-1和LER-0,以显着类似于CH1突变体的响应至正常(NL)条件的方式对高光(HL)条件反应。我们还提出了可以根据光应力条件的类型调节叶绿素A至B的转化的可能方法。

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