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首页> 外文期刊>Plant physiology >In vivo target sites of nitric oxide in photosynthetic electron transport as studied by chlorophyll fluorescence in pea leaves.
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In vivo target sites of nitric oxide in photosynthetic electron transport as studied by chlorophyll fluorescence in pea leaves.

机译:豌豆叶片中叶绿素荧光研究的一氧化氮的体内目标位点在光合作用电子传输中。

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The role of nitric oxide (NO) in photosynthesis is poorly understood as indicated by a number of studies in this field with often conflicting results. As various NO donors may be the primary source of discrepancies, the aim of this study was to apply a set of NO donors and its scavengers, and examine the effect of exogenous NO on photosynthetic electron transport in vivo as determined by chlorophyll fluorescence of pea (Pisum sativum) leaves. Sodium nitroprusside-induced changes were shown to be mediated partly by cyanide, and S-nitroso-N-acetylpenicillinamine provided low yields of NO. However, the effects of S-nitrosoglutathione are inferred exclusively by NO, which made it an ideal choice for this study. Q(A)(-) reoxidation kinetics show that NO slows down electron transfer between Q(A) and Q(B), and inhibits charge recombination reactions of Q(A)(-) with the S(2) state of the water-oxidizing complex in photosystem II. Consistent with these results, chlorophyll fluorescence induction suggests that NO also inhibits steady-state photochemical and nonphotochemical quenching processes. NO also appears to modulate reaction-center-associated nonphotochemical quenching.
机译:一氧化氮(NO)在光合作用中的作用了解甚少,正如该领域的许多研究所表明的那样,结果往往相互矛盾。由于各种NO供体可能是差异的主要来源,因此本研究的目的是应用一组NO供体及其清除剂,并通过豌豆的叶绿素荧光确定外源NO对体内光合电子传递的影响(豌豆(Pisum sativum)叶子。已显示硝普钠引起的变化部分由氰化物介导,而S-亚硝基-N-乙酰青霉素胺提供的NO产量低。但是,S-亚硝基谷胱甘肽的作用仅由NO推断,这使其成为本研究的理想选择。 Q(A)(-)的再氧化动力学表明,NO减慢了Q(A)和Q(B)之间的电子转移,并抑制了Q(A)(-)与水的S(2)状态的电荷重组反应-光系统II中的氧化配合物。与这些结果一致,叶绿素荧光诱导表明NO也抑制稳态的光化学和非光化学猝灭过程。 NO也似乎调节反应中心相关的非光化学猝灭。

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