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首页> 外文期刊>Physiologia plantarum >A novel P700 redox kinetics probe for rapid, non-intrusive and whole-tissue determination of photosystem II functionality, and the stoichiometry of the two photosystems in vivo
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A novel P700 redox kinetics probe for rapid, non-intrusive and whole-tissue determination of photosystem II functionality, and the stoichiometry of the two photosystems in vivo

机译:一种新颖的P700氧化还原动力学探针,用于快速,非侵入性和整个组织测定光系统II的功能,以及体内两个光系统的化学计量

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摘要

We sought a rapid, non-intrusive, whole-tissue measure of the functional photosystem II (PS II) content in leaves. Summation of electrons, delivered by a single-turnover flash to P700(+) (oxidized PS I primary donor) in continuous background far-red light, gave a parameter S in absorbance units after taking into account an experimentally determined basal electron flux that affects P700 redox kinetics. S was linearly correlated with the functional PS II content measured by the O-2 yield per single-turnover repetitive flash in Arabidopsis thaliana expressing an antisense construct to the PsbO (manganese-stabilizing protein in PS II) proteins of PS II (PsbO mutants). The ratio of S to z(max) (total PS I content in absorbance units) was comparable to the PS II/PS I reaction-center ratio in wild-type A. thaliana and in control Spinacea oleracea. Both S and S/z(max) decreased in photoinhibited spinach leaf discs. The whole-tissue functional PS II content and the PS II/photosystem I (PS I) ratio can be non-intrusively monitored by S and S/z(max), respectively, using a quick P700 absorbance protocol compatible with modern P700 instruments.
机译:我们寻求叶片中功能性光系统II(PS II)含量的快速,非侵入性全组织测量。在连续背景远红光下,单周闪光传递至P700(+)(氧化的PS I主供体)的电子总和,在考虑到实验确定的影响基础电子通量后,得出吸光度单位的参数S P700氧化还原动力学。 S与功能性PS II含量线性相关,该功能性PS II含量是通过拟南芥中单次重复闪光的O-2产量所测得的,该表达表达了对PS II的PsbO(PS II中的锰稳定蛋白)反义构建体(PsbO突变体) 。在野生型拟南芥和对照菠菜中,S与z(max)的比(总PS I含量以吸光度单位计)与PS II / PS I反应中心比相当。光抑制菠菜叶圆盘中的S和S / z(max)均降低。可以使用与现代P700仪器兼容的快速P700吸光度协议,分别通过S和S / z(max)非侵入式监视整个组织的功能性PS II含量和PS II /光系统I(PS I)比率。

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