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The lack of LHCII proteins modulates excitation energy partitioning and PSII charge recombination in Chlorina F2 mutant of barley

机译:大麦Chlorina F2突变体中缺乏LHCII蛋白调节激发能分配和PSII电荷重组

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摘要

Analysis of the partitioning of absorbed light energy within PSII into fractions utilized by PSII photochemistry (ØPSII), thermally dissipated via ΔpH-and zeaxanthin-dependent energy quenching (ØNPQ) and constitutive non-photochemical energy losses (ØNO) was performed in wild type and F2 mutant of barley. The estimated energy partitioning of absorbed light to various pathways indicated that the fraction of ØPSII was slightly higher, while the proportion of thermally dissipated energy through ØNPQ was 38% lower in F2 mutant than in WT. In contrast, ØNO, i.e. the fraction of absorbed light energy dissipated by additional quenching mechanism(s) was 34% higher in F2 mutant. The increased proportion of ØNO correlated with narrowing the temperature gap (ΔTM) between S2/3QB− and S2QA− charge recombinations in F2 mutant as revealed by thermoluminescence measurements. We suggest that this would result in increased probability for an alternative non-radiative P680+QA− radical pair recombination pathway for energy dissipation within the reaction centre of PSII (reaction center quenching) and that this additional quenching mechanism might play an important role in photoprotection when the capacity for the primary, zeaxanthin-dependent non-photochemical quenching (ØNPQ) and state transitions pathways are restricted in the absence of LHCII polypeptides in F2 mutant.
机译:在野生型中,对PSII中吸收的光能分配到PSII光化学(ØPSII)利用,通过ΔpH和玉米黄质依赖的能量猝灭(ØNPQ)进行热消散以及本构性非光化学能损失(ØNO)的馏分中进行了分析。大麦的F2突变体。估计的吸收光到各种途径的能量分配表明,ØPSII的比例略高,而F2突变体中通过ØNPQ的热耗能比例比WT低38%。相反,在F2突变体中,ØNO,即通过其他淬灭机制耗散的吸收光能的百分比高34%。 ØNO比例的增加与F2突变体中S2 / 3QB-和S2QA-电荷重组之间的温度差(ΔTM)变窄有关,如热发光测量所揭示。我们认为,这将增加PSII反应中心内能量消散的替代性非辐射P680 + QA-自由基对重组途径的可能性(反应中心猝灭),并且这种额外的猝灭机制可能在光保护中起重要作用在F2突变体中不存在LHCII多肽的情况下,玉米黄素依赖性玉米黄素依赖性非光化学猝灭(ØNPQ)和状态转换途径的能力受到限制。

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