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Concentration Effect on Quenching of Chlorophyll a Fluorescence by All-Trans-β-Carotene in Photosynthesis

机译:全反式-β-胡萝卜素在光合作用中对叶绿素a荧光猝灭的浓度效应

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Absorption, fluorescence spectra of chlorophyll a (Chl-a) and all-trans-β-carotene (β-Car) mixing solution are investigated in different polarity and polarizability solvents. The carotenoids regulate the energy flow in photosynthesis by interaction with chlorophyll, leading to an observable reduction of Chl-a fluorescence. The fluorescence red shifts with the increasing solvent polarizability. The energy transfer in the Chl-a and β-Car system is proposed. The electron transfer should be dominant in quenching Chl-a fluorescence rather than the energy transfer in this system. Polar solvent with large polarizability shows high quenching efficiency. When dissolved in carbon tetrachloride, Chl-a presents red shift of absorption and blue shift of fluorescence spectra with increasing β-Car concentration, which implies a Chl-a conformational change.
机译:研究了在不同极性和极化性溶剂中叶绿素a(Chl-a)和全反式-β-胡萝卜素(β-Car)混合溶液的吸收,荧光光谱。类胡萝卜素通过与叶绿素相互作用来调节光合作用中的能量流,从而导致Chl-a荧光的减少。荧光红随着溶剂极化率的增加而移动。提出了在Chl-a和β-Car系统中的能量转移。电子传递应在猝灭Ch1-a荧光中起主导作用,而不是该系统中的能量传递。具有大极化率的极性溶剂显示出高猝灭效率。当溶解在四氯化碳中时,Chl-a会随着β-Car浓度的增加而出现吸收红移和荧光光谱的蓝移,这意味着Chl-a构象变化。

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