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首页> 外文期刊>Journal of Plant Physiology >Copper-induced inhibition of PSII photochemistry in cyanobacterium Spirulina platensis is stimulated by light
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Copper-induced inhibition of PSII photochemistry in cyanobacterium Spirulina platensis is stimulated by light

机译:光刺激铜诱导蓝藻螺旋藻中PSII光化学的抑制

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The role of light in the modifications of copper toxicity on PSII photochemistry in Spirulina platensis was investigated in vivo by use of chlorophyll fluorescence, The results demonstrated that copper (up to 300 mmol m~(-3)) substantially inhibited PSII photochemistry in the light but exhibited no significant effects on PSII photochemistry when the cells were incubated in the dark for 12 h. Moreover, the higher the light intensity, the more significant effect the copper treatment induced. It was found that copper inhibited PSII photochemistry, which was linked to the reduction of Q_A. Copper also decreased the proportion of the active PSII reaction centers, but showed no effects on the proportion of Q_B-non-reducing PSII reaction centers. The results on PSII photochemistry under the steady state of photosynthesis demonstrated that copper induced an increase in the non-photochemical quenching while it resulted in a decrease in the photochemical quenching and the efficiency of energy excitation capture by open PSII reaction centers, of which both resulted in a decrease in the quantum yield of PSII electron transport.
机译:利用叶绿素荧光技术研究了光在螺旋藻中修饰铜对PSII光化学的毒性作用,结果表明,铜(高达300 mmol m〜(-3))基本上抑制了光中PSII的光化学。但当细胞在黑暗中孵育12小时时,对PSII光化学无明显影响。而且,光强度越高,铜处理引起的效果越显着。发现铜抑制了PSII光化学,这与Q_A的降低有关。铜还降低了活性PSII反应中心的比例,但对Q_B非还原PSII反应中心的比例没有影响。在光合作用稳定状态下PSII光化学的结果表明,铜诱导了非光化学猝灭的增加,而导致光化学猝灭的减少和通过开放PSII反应中心捕获能量激发的效率,两者均导致PSII电子传输的量子产率降低。

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