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Effects of Drought on Primary Photosynthetic Processes of Cotton Leaves

机译:干旱对棉花叶片初级光合过程的影响

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摘要

The effects of drought on Photosystem II (PSII) fluorescence and photosynthetic electron transport activities were analyzed in cotton. Water stress did not modify the amplitude of leaf variable fluorescence at room temperature in the presence of 3-(3,4-dichlorophenyl)-1,1-dimethylurea (DCMU) nor at 77 K. It is therefore concluded that photon collection, their distribution between the two photosystems, and PSII photochemistry are unaffected by the stress. In droughted leaves at room temperature under low exciting light, the transitory maximum (Fp) and steady state (Ft) fluorescence levels are increased; under high exciting light, Fp level and the rise time from the initial level (Fo) to Fp are unchanged, whereas Fp to Ft decay time is increased. These results infer that the drought slows the rate of plastoquinone reoxidation. This conclusion agrees with a larger proportion of reduced primary PSII electron acceptor QA measured at the steady state under low light. In thylakoids isolated from droughted leaves, PSII mediated electron flow was the same as in thylakoids from control leaves, whereas PSI mediated electron transport was inhibited. It is shown that water stress does not induce sensitization to photoinhibition in cotton.
机译:分析了干旱对棉花光系统II(PSII)荧光和光合电子传递活性的影响。在存在3-(3,4-二氯苯基)-1,1-二甲基脲(DCMU)或77 K的条件下,水分胁迫在室温下均不会改变叶片可变荧光的幅度。因此得出结论,光子的收集及其两个光系统之间的分布以及PSII光化学不受应力的影响。在室温下在低激发光下干旱的叶片中,瞬时最大(Fp)和稳态(Ft)荧光水平增加;在高激发光下,Fp电平和从初始电平(Fo)到Fp的上升时间保持不变,而Fp到Ft的衰减时间增加。这些结果推断干旱减慢了质体醌再氧化的速度。该结论与在弱光下在稳态下测得的还原的初级PSII电子受体QA的比例较大相符。从干旱叶片分离的类囊体中,PSII介导的电子流与对照叶片中的类囊体相同,而PSI介导的电子传递受到抑制。结果表明,水分胁迫不会诱导棉花对光抑制的敏感性。

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