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Chlorophyll Composition Chlorophyll Fluorescence and Grain Yield Change in esl Mutant Rice

机译:esl突变型水稻的叶绿素组成叶绿素荧光和产量变化

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摘要

To evaluate the effect of changes in chlorophyll (Chl) composition and fluorescence on final yield formation, early senescence leaf (esl) mutant rice and its wild-type cultivar were employed to investigate the genotype-dependent differences in Chl composition, Chl fluorescence, and yield characteristics during the grain-filling stage. However, the temporal expression patterns of key genes involved in the photosystem II (PSII) reaction center in the leaves of two rice genotypes were analyzed by quantitative real-time polymerase chain reaction (qRT-PCR). Results showed that the seed-setting rate, 1000-grain weight, and yield per plant remarkably decreased, and the increase in the 1000-grain weight during the grain-filling stage was retarded in esl mutant rice. Chl composition, maximal fluorescence yield (Fm), variable fluorescence (Fv), a maximal quantum yield of PSII photochemistry (Fv/Fm), and net photosynthetic rate (Pn) in esl mutant rice considerably decreased, thereby indicating the weakened abilities of light energy harvesting and transferring in senescent leaves. The esl mutant rice showed an increase in the minimal fluorescence yield (F0) and 1 − Fv/Fm and decreases in the expression levels of light-harvesting Chl a/b binding protein (Cab) and photosystem II binding protein A (PsbA), PsbB, PsbC, and PsbD encoding for the reaction center of the PSII complex during the grain-filling stage. These results indicated the PSII reaction centers were severely damaged in the mesophyll cells of senescent leaves, which resulted in the weakened harvesting quantum photon and transferring light energy to PSI and PSII for carbon dioxide assimilation, leading to enhanced heat dissipation of light energy and a decrease in Pn.
机译:为了评估叶绿素(Chl)组成和荧光变化对最终产量形成的影响,采用早衰叶(esl)突变水稻及其野生型品种研究了Chl组成,Chl荧光和籽粒充实阶段的产量特征。然而,通过定量实时聚合酶链反应(qRT-PCR)分析了两个水稻基因型叶片中参与光系统II(PSII)反应中心的关键基因的时间表达模式。结果表明,ESL突变型水稻的结实率,1000粒重和单株产量显着降低,并且在灌浆期1000粒重的增加受到阻碍。 esl突变型水稻的Chl组成,最大荧光产量(Fm),可变荧光(Fv),PSII光化学最大量子产量(Fv / Fm)和净光合速​​率(Pn)大大降低,从而表明光能减弱衰老叶片中的能量收集和转移。 esl突变水稻显示最低荧光产量(F0)和1-Fv / Fm增加,而光捕获Chl a / b结合蛋白(Cab)和光系统II结合蛋白A(PsbA)的表达水平降低,在谷物填充阶段编码PSII复合物反应中心的PsbB,PsbC和PsbD。这些结果表明,衰老叶片的叶肉细胞中PSII反应中心受到严重破坏,导致量子光子的收集能力减弱,并将光能转移至PSI和PSII进行二氧化碳同化,导致光能的热耗散增加并降低。在Pn中。

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