We studied the charge recombination characteristics of Photosystem II (PSII) redox components in whole cells of the chlorophyll (Chl) d-dominated cyanobacterium, Acaryochloris marina, by flash-induced chlorophyll fluorescence and thermoluminescence measurements. Flash-induced chlorophyll fluorescence decay was retarded in the mus and ms time ranges and accelerated in the s time range in Acaryochloris marina relative to that in the Chl a-containing cyanobacterium, Synechocystis PCC 6803. In the presence of 3-(3,4-dichlorophenyl)-1, 1-dimethylurea, which blocks the Q(B) site, the relaxation of fluorescence decay arising from S(2)Q(A)(-) recombination was somewhat faster in Acaryochloris marina than in Synechocystis PCC 6803. Thermoluminescence intensity of the so called B band, arising from the recombination of the S(2)Q(B)(-) charge separated state, was enhanced significantly (2.5 fold) on the basis of equal amounts of PSII in Acaryochloris marina as compared with Synechocystis 6803. Our data show that the energetics of charge recombination is modified in Acaryochloris marina leading to a approximately 15 meV decrease of the free energy gap between the Q(A) and Q(B) acceptors. In addition, the total free energy gap between the ground state and the excited state of the reaction center chlorophyll is at least approximately 25-30 meV smaller in Acaryochloris marina, suggesting that the primary donor species cannot consist entirely of Chl a in Acaryochloris marina, and there is a contribution from Chl d as well.

译文

我们通过闪光诱导的叶绿素荧光和热释光测量研究了叶绿素 (Chl) d为主的蓝细菌Acaryochloris marina的整个细胞中光系统II (PSII) 氧化还原成分的电荷重组特性。相对于含Chl a的蓝细菌,Synechocystis PCC 6803,闪蒸诱导的叶绿素荧光衰减在mus和ms时间范围内被延迟,而在s时间范围内被加速。在阻断Q(B) 位点的3-(3,4-二氯苯基)-1,1-二甲基脲的存在下,由S(2)Q(A)(-) 重组引起的荧光衰减的弛豫在Acaryochloris marina中比在Synechocystis PCC 6803中略快。由于S(2)Q(B)(-) 电荷分离状态的重组而产生的所谓B带的热致发光强度在与6803的集胞藻相比,基于等量的Acaryochloris marina中的PSII显著增强 (2.5倍)。我们的数据表明,在Acaryochloris marina中电荷重组的能量得到了改变,导致Q (a) 和Q(B) 受体之间的自由能隙降低了约15 meV。此外,在Acaryochloris marina中,反应中心叶绿素的基态和激发态之间的总自由能隙至少小约25-30 meV,这表明主要供体物种不能完全由Acaryochloris marina中的Chl a组成,chl d也做出了贡献。

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