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6-磷酸葡萄糖脱氢酶(G6PDH)活性突显了盐胁迫期间小立碗藓中围绕光系统I的循环电子流的运行情况。

G6PDH activity highlights the operation of the cyclic electron flow around PSI in Physcomitrella patens during salt stress.

作者信息

Gao Shan, Zheng Zhenbing, Huan Li, Wang Guangce

机构信息

Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.

Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.

出版信息

Sci Rep. 2016 Feb 18;6:21245. doi: 10.1038/srep21245.

Abstract

Photosynthetic performances and glucose-6-phosphate dehydrogenase (G6PDH) activity in Physcomitrella patens changed greatly during salt stress and recovery. In P. patens, the cyclic electron flow around photosystem (PS) I was much more tolerant to high salt stress than PSII. After high salt stress, the PSII activity recovered much more slowly than that of PSI, which was rapidly restored to pretreatment levels even as PSII was almost inactivate. This result suggested that after salt stress the recovery of the cyclic electron flow around PSI was independent of PSII activity. In addition, G6PDH activity and NADPH content increased under high salt stress. When G6PDH activity was inhibited by glucosamine (Glucm, a G6PDH inhibitor), the cyclic electron flow around PSI and the NADPH content decreased significantly. Additionally, after recovery in liquid medium containing Glucm, the PSI activity was much lower than in liquid medium without Glucm. These results suggested the PSI activity was affected significantly by G6PDH activity and the NADPH content. Based on the above results, we propose that G6PDH in P. patens has a close relationship with the photosynthetic process, possibly providing NADPH for the operation of the cyclic electron flow around PSI during salt stress and promoting the restoration of PSI.

摘要

在盐胁迫和恢复过程中,小立碗藓的光合性能和葡萄糖-6-磷酸脱氢酶(G6PDH)活性发生了很大变化。在小立碗藓中,围绕光系统(PS)I的循环电子流比PSII对高盐胁迫更具耐受性。高盐胁迫后,PSII活性的恢复比PSI慢得多,即使PSII几乎失活,PSI仍能迅速恢复到预处理水平。这一结果表明,盐胁迫后围绕PSI的循环电子流的恢复独立于PSII活性。此外,高盐胁迫下G6PDH活性和NADPH含量增加。当G6PDH活性被葡糖胺(Glucm,一种G6PDH抑制剂)抑制时,围绕PSI的循环电子流和NADPH含量显著降低。此外,在含有Glucm的液体培养基中恢复后,PSI活性比不含Glucm的液体培养基中的低得多。这些结果表明PSI活性受G6PDH活性和NADPH含量的显著影响。基于上述结果,我们提出小立碗藓中的G6PDH与光合过程密切相关,可能在盐胁迫期间为围绕PSI的循环电子流的运行提供NADPH,并促进PSI的恢复。

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