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Effects of Mg2+on Spectral Characteristics and Photosynthetic Functions of Spinach Photosystem II

Spectrochimica acta Part A, Molecular and biomolecular spectroscopy(2009)

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Abstract
In the present paper we report the results obtained with the photosystem II (PSII) isolated from spinach treated by MgCl2, and studied the effect of Mg2+ on spectral characteristics and photosynthetic functions of PSII. The results showed that Mg2+ treatment at a suitable concentration could significantly increase the absorption intensity of PSII and the intensity ratio of Soret band to Q band of chlorophyll-a. The treatment also elevated the excited peak intensity at 230, 278 and 343nm, and the emitted peak intensity at 304 and 682nm, and the ratio of F278/F230, respectively. The results implied that Mg2+ increased absorbance for visible light, improving energy transfer among amino acids within PSII protein complex and accelerating energy transport from tyrosine residue to chlorophyll-a. The photochemical activity and oxygen evolving rate of PSII were also enhanced by Mg2+. This is viewed as evidence that Mg2+ can promote energy transfer and oxygen evolution in PSII of spinach.
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Key words
Mg2+,Photosystem II,Spectral characteristics,Energy transfer,Oxygen evolution
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