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用于光系统I的替代光合电子供体系统支持非异形胞蓝细菌——螺旋藻中的光依赖固氮作用。

An alternate photosynthetic electron donor system for PSI supports light dependent nitrogen fixation in a non-heterocystous cyanobacterium, Plectonema boryanum.

作者信息

Misra Hari S, Khairnar Nivedita P, Mahajan Suresh K

机构信息

Molecular Biology & Agriculture Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400 085, India.

出版信息

J Plant Physiol. 2003 Jan;160(1):33-9. doi: 10.1078/0176-1617-00846.

Abstract

Plectonema boryanum exhibits temporal separation of photosynthesis and nitrogen fixation under diazotrophic conditions. During nitrogen fixation, the photosynthetic electron transport chain becomes impaired, which leads to the uncoupling of the PSII and PSI activities. A 30-40% increase in PSI activity and continuous generation of ATP through light-dependent processes seem to support the nitrogen fixation. The use of an artificial electron carrier that shuttles electrons between the plastoquinone pool and plastocyanin, bypassing cytochrome b/f complex, enhanced the photosynthetic electron transport activity five to six fold during nitrogen fixation. Measuring of full photosynthetic electron transport activity using methyl voilogen as a terminal acceptor revealed that the photosynthetic electron transport components beyond plastocyanin might be functional. Further, glycolate can act as a source of electrons for PSI for the nitrogen fixing cells, which have residual PSII activity. Under conditions when PSI becomes largely independent of PSII and glycolate provides electrons for PSI activity, the light-dependent nitrogen fixation also was stimulated by glycolate. These results suggest that during nitrogen fixation, when the photosynthetic electron transport from PSII is inhibited at the level of cytochrome b/f complex, an alternate electron donor system for PSI may be required for the cells to carry out light dependent nitrogen fixation.

摘要

在固氮条件下,螺旋藻表现出光合作用和固氮作用的时间分离。在固氮过程中,光合电子传递链受损,导致光系统II(PSII)和光系统I(PSI)的活性解偶联。PSI活性增加30%-40%,并且通过光依赖过程持续产生ATP,这似乎支持了固氮作用。使用一种在质体醌库和质体蓝素之间穿梭电子、绕过细胞色素b/f复合体的人工电子载体,在固氮过程中使光合电子传递活性提高了五到六倍。以甲基紫精作为末端受体来测量全光合电子传递活性,结果表明质体蓝素之外的光合电子传递成分可能是有功能的。此外,乙醇酸可以作为具有残余PSII活性的固氮细胞中PSI的电子来源。在PSI很大程度上独立于PSII且乙醇酸为PSI活性提供电子的条件下,光依赖的固氮作用也受到乙醇酸的刺激。这些结果表明,在固氮过程中,当从PSII进行的光合电子传递在细胞色素b/f复合体水平受到抑制时,细胞进行光依赖的固氮作用可能需要一个PSI的替代电子供体系统。

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