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Partially dissecting the steady-state electron fluxes in Photosystem I in wild-type and pgr5 and ndh mutants of Arabidopsis

机译:部分剖析拟南芥野生型和pgr5和ndh突变体中光系统I中的稳态电子通量

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摘要

Cyclic electron flux (CEF) around Photosystem I (PS I) is difficult to quantify. We obtained the linear electron flux (LEFO2) through both photosystems and the total electron flux through PS I (ETR1) in Arabidopsis in CO2-enriched air. ΔFlux = ETR1 – LEFO2 is an upper estimate of CEF, which consists of two components, an antimycin A-sensitive, PGR5 (proton gradient regulation 5 protein)-dependent component and an insensitive component facilitated by a chloroplastic nicotinamide adenine dinucleotide dehydrogenase-like complex (NDH). Using wild type as well as pgr5 and ndh mutants, we observed that (1) 40% of the absorbed light was partitioned to PS I; (2) at high irradiance a substantial antimycin A-sensitive CEF occurred in the wild type and the ndh mutant; (3) at low irradiance a sizable antimycin A-sensitive CEF occurred in the wild type but not in the ndh mutant, suggesting an enhancing effect of NDH in low light; and (4) in the pgr5 mutant, and the wild type and ndh mutant treated with antimycin A, a residual ΔFlux existed at high irradiance, attributable to charge recombination and/or pseudo-cyclic electron flow. Therefore, in low-light-acclimated plants exposed to high light, ΔFlux has contributions from various paths of electron flow through PS I.
机译:围绕光系统I(PS I)的循环电子通量(CEF)难以量化。我们获得了通过两个光系统的线性电子通量(LEFO2),以及在富含CO2的空气中拟南芥中通过PS I的总电子通量(ETR1)。 ΔFlux= ETR1 – LEFO2是CEF的上限,它由两个成分组成:抗霉素A敏感,PGR5(质子梯度调节5蛋白)依赖性成分和由氯塑性烟酰胺腺嘌呤二核苷酸脱氢酶样复合物促进的不敏感成分(NDH)。使用野生型以及pgr5和ndh突变体,我们观察到(1)40%的吸收光分配给PS I; (2)在高辐照度下,在野生型和ndh突变体中发生大量的抗霉素A敏感性CEF; (3)在低辐照度下,野生型中出现相当大的抗霉素A敏感性CEF,而在ndh突变体中则没有,这表明NDH在弱光下具有增强作用; (4)在pgr5突变体和用抗霉素A处理的野生型和ndh突变体中,在高辐照度下存在残留的ΔFlux,这归因于电荷重组和/或伪循环电子流。因此,在暴露于强光下的低光照适应植物中,ΔFlux的贡献来自电子流经PS I的各种路径。

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