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叶绿体基质中产生的超氧化物会导致喜阴树种粗叶木属植物亨利粗叶木的光系统I发生光抑制。

Superoxide generated in the chloroplast stroma causes photoinhibition of photosystem I in the shade-establishing tree species Psychotria henryi.

作者信息

Huang Wei, Yang Ying-Jie, Zhang Jiao-Lin, Hu Hong, Zhang Shi-Bao

机构信息

Key Laboratory of Economic Plants and Biotechnology, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, 650201, Yunnan, China.

Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Mengla, 666303, Yunnan, China.

出版信息

Photosynth Res. 2017 Jun;132(3):293-303. doi: 10.1007/s11120-017-0389-4. Epub 2017 Apr 21.

Abstract

Our previous studies indicated that high light induced significant photoinhibition of photosystem I (PSI) in the shade-establishing tree species Psychotria henryi. However, the underlying mechanism has not been fully clarified. In the present study, in order to investigate the mechanism of PSI photoinhibition in P. henryi, we treated detached leaves with constant high light in the presence of methyl viologen (MV) or a soluble α-tocopherol analog, 2,2,5,7,8-pentamethyl-6-chromanol (PMC). We found that MV significantly depressed photochemical quantum yields in PSI and PSII when compared to PMC. On condition that no PSI photoinhibition happened, although cyclic electron flow (CEF) was abolished in the MV-treated samples, P700 oxidation ratio was maintain at higher levels than the PMC-treated samples. In the presence of PMC, PSI photoinhibition little changed but PSII photoinhibition was significantly alleviated. Importantly, PSI photoinhibition was largely accelerated in the presence of MV, which stimulates the production of superoxide and subsequently other reactive oxygen species at the chloroplast stroma by accepting electrons from PSI. Furthermore, MV largely aggravated PSII photoinhibition when compared to control. These results suggest that high P700 oxidation ratio cannot prevent PSI photoinhibition in P. henryi. Furthermore, the superoxide produced in the chloroplast stroma is critical for PSI photoinhibition in the higher plant P. henryi, which is opposite to the mechanism underlying PSI photoinhibition in Arabidopsis thaliana and spinach. These findings highlight a new mechanism of PSI photoinhibition in higher plants.

摘要

我们之前的研究表明,高光会在喜荫树种柳叶水锦树中诱导光系统I(PSI)产生显著的光抑制。然而,其潜在机制尚未完全阐明。在本研究中,为了探究柳叶水锦树中PSI光抑制的机制,我们在甲基紫精(MV)或一种可溶性α-生育酚类似物2,2,5,7,8-五甲基-6-色满醇(PMC)存在的情况下,用恒定高光处理离体叶片。我们发现,与PMC相比,MV显著降低了PSI和PSII中的光化学量子产率。在未发生PSI光抑制的条件下,尽管MV处理的样品中循环电子流(CEF)被消除,但P700氧化率维持在高于PMC处理样品的水平。在PMC存在的情况下,PSI光抑制变化不大,但PSII光抑制得到显著缓解。重要的是,在MV存在的情况下,PSI光抑制大大加速,MV通过从PSI接受电子刺激叶绿体基质中超氧化物以及随后其他活性氧的产生。此外,与对照相比,MV大大加重了PSII光抑制。这些结果表明,高P700氧化率不能防止柳叶水锦树中的PSI光抑制。此外,叶绿体基质中产生的超氧化物对于高等植物柳叶水锦树中的PSI光抑制至关重要,这与拟南芥和菠菜中PSI光抑制的潜在机制相反。这些发现突出了高等植物中PSI光抑制的一种新机制。

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