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盐酸胍对大麦类囊体膜能量分配和电子传递的影响
引用本文:于晖,马桂芝.盐酸胍对大麦类囊体膜能量分配和电子传递的影响[J].生物化学与生物物理学报,1994,26(1):73-79.
作者姓名:于晖  马桂芝
作者单位:中国科学院研究生院生物教学部,中国科学院植物研究所
摘    要:本文以大麦叶片为实验材料,研究了盐酸胍修饰对类囊体膜能量分配及电子传递的影响。结果表明:盐酸胍处理类囊体膜,室温下F685荧光强度,随着盐酸胍浓度的增加而逐渐下降。盐酸胍处理导致类囊体膜在低温(77K)下F685/F786比值下降,并随着盐酸胍浓度的增加而加剧。盐酸胍处理抑制类囊体膜以H2O为电子供体的DCIP光还原速度和Chla诱导荧光产率,这种抑制作用可分别为加入PSII的人工电子供体DPC和

关 键 词:大麦  盐酸胍  类囊体膜  电子传递

Effect of Guanidine Hydrochloride on Energy Distribution and Electron Transport of Barley Thylakoid Membranes
YU Hui and ZHANG Zheng-Dong.Effect of Guanidine Hydrochloride on Energy Distribution and Electron Transport of Barley Thylakoid Membranes[J].Acta Biochimica et Biophysica Sinica,1994,26(1):73-79.
Authors:YU Hui and ZHANG Zheng-Dong
Abstract:Effects of guanidine hydrochloride (GuHCl) on the energy distribution and the electron tranoprt of barley thylakoid membranes have been investigated. The following were discovered: GuHCl decreases F685 emission at the room temperature,and with the increase of the concentration of GuHCl the emission intensity declined. GuHCl induces a significant decrease of F685/F736 ratio at 77 K, and with the increase of the concentration of GuHCl this decrease is enhanced. GuHCl inhibits the rate of photoreduction of DCIP with H2O as the electron donor and the yield of the variable Chla fluorescence. The inhibitions respectively could be restored by the addition of artificial electron donor of PSII, DPC and NH2OH.GuHCl stimulates the rate of methyl viologen photoreduction (with DCIP/Asc. as the electron donor system).It is suggested that the protein on the thylakoid membranes was modified by GuHCl, which caused the excitation energy redistribution from PSII to PSI.
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