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盐胁迫下蓝藻钝顶螺旋藻细胞中光系统II的特性研究

Characterization of photosystem II in salt-stressed cyanobacterial Spirulina platensis cells.

作者信息

Gong Hongmei, Tang Yunlai, Wang Jia, Wen Xiaogang, Zhang Lixin, Lu Congming

机构信息

Photosynthesis Research Center, Institute of Botany, Chinese Academy of Sciences, Beijing, China.

出版信息

Biochim Biophys Acta. 2008 Jun;1777(6):488-95. doi: 10.1016/j.bbabio.2008.03.018. Epub 2008 Mar 29.

Abstract

PSII activity was inhibited after Spirulina platensis cells were incubated with different salt concentrations (0-0.8 M NaCl) for 12 h. Flash-induced fluorescence kinetics showed that in the absence of DCMU, the half time of the fast and slow components decreased while that of the middle component increased considerably with increasing salt concentration. In the presence of DCMU, fluorescence relaxation was dominated by a 0.6s component in control cells. After salt stress, this was partially replaced by a faster new component with half time of 20-50 ms. Thermoluminescence measurements revealed that S(2)Q(A)(-) and S(2)Q(B)(-) recombinations were shifted to higher temperatures in parallel and the intensities of the thermoluminescence emissions were significantly reduced in salt-stressed cells. The period-four oscillation of the thermoluminescence B band was highly damped. There were no significant changes in contents of CP47, CP43, cytochrome c550, and D1 proteins. However, content of the PsbO protein in thylakoid fraction decreased but increased significantly in soluble fraction. The results suggest that salt stress leads to a modification of the Q(B) niche at the acceptor side and an increase in the stability of the S(2) state at the donor side, which is associated with a dissociation of the PsbO protein.

摘要

钝顶螺旋藻细胞在不同盐浓度(0 - 0.8 M NaCl)下孵育12小时后,PSII活性受到抑制。闪光诱导荧光动力学表明,在不存在二氯苯基二甲基脲(DCMU)的情况下,随着盐浓度的增加,快速和慢速成分的半衰期缩短,而中间成分的半衰期显著延长。在存在DCMU的情况下,对照细胞中的荧光弛豫以0.6秒的成分占主导。盐胁迫后,这部分被半衰期为20 - 50毫秒的更快的新成分取代。热发光测量显示,盐胁迫细胞中S(2)Q(A)(-)和S(2)Q(B)(-)的重组同时向更高温度偏移,并且热发光发射强度显著降低。热发光B带的四期振荡高度衰减。CP47、CP43、细胞色素c550和D1蛋白的含量没有显著变化。然而,类囊体部分中PsbO蛋白的含量降低,但在可溶部分中显著增加。结果表明,盐胁迫导致受体侧Q(B)生态位的改变和供体侧S(2)状态稳定性的增加,这与PsbO蛋白的解离有关。

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