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在状态转换方面受损的植物能够在很大程度上弥补其缺陷。

Plants impaired in state transitions can to a large degree compensate for their defect.

作者信息

Lunde Christina, Jensen Poul Erik, Rosgaard Lisa, Haldrup Anna, Gilpin Margaret Joan, Scheller Henrik Vibe

机构信息

Plant Biochemistry Laboratory, Department of Plant Biology, The Royal Veterinary and Agricultural University, 40 Thorvaldsensvej, DK-1871 Frederiksberg C, Copenhagen, Denmark.

出版信息

Plant Cell Physiol. 2003 Jan;44(1):44-54. doi: 10.1093/pcp/pcg012.

Abstract

Arabidopsis thaliana plants lacking the PSI-H or PSI-L subunit of photosystem I have been shown to be severely affected in their ability to perform state transitions, but no visual phenotype was observed when these plants were grown under different light quantities and qualities. However, the chloroplasts in the PSI-H- and PSI-L-less plants contained fewer and more extended grana stacks. The plants lacking PSI-H or PSI-L were characterised with respect to their photosynthetic performance. Wild-type plants adjusted the non-photochemical fluorescence quenching to maintain constant levels of PSII quantum yield and reduction of the plastoquinone pool. In contrast, the plants deficient in state transitions had a more reduced plastoquinone pool and consequently, a less efficient PSII-photochemistry under growth-light conditions and in state 2. The maximal photosynthetic capacity and the quantum efficiency of oxygen evolution were diminished by 8-14% in the PSI-H-less plants. Under growth-light conditions, the stroma was similarly reduced in the PSI-H-less plants and the rate of cyclic electron transport was unchanged. Pigment analysis showed that the xanthophyll cycle was not upregulated in order to compensate for the lack of state transitions. In general, the plants lacking PSI-H and PSI-L showed a decreased ability to optimise photosynthesis according to the light conditions.

摘要

已证明,缺乏光系统I的PSI-H或PSI-L亚基的拟南芥植株在进行状态转换的能力方面受到严重影响,但当这些植株在不同光量和光质条件下生长时,未观察到明显的表型。然而,缺乏PSI-H和PSI-L的植株中的叶绿体含有较少且更细长的基粒垛。对缺乏PSI-H或PSI-L的植株的光合性能进行了表征。野生型植株调节非光化学荧光猝灭,以维持PSII量子产率和质体醌库还原水平的恒定。相比之下,缺乏状态转换的植株的质体醌库还原程度更高,因此,在生长光条件下和状态2时,PSII光化学效率较低。缺乏PSI-H的植株的最大光合能力和放氧量子效率降低了8-14%。在生长光条件下,缺乏PSI-H的植株的基质同样减少,循环电子传递速率不变。色素分析表明,叶黄素循环未上调以补偿状态转换的缺乏。总体而言,缺乏PSI-H和PSI-L的植株根据光照条件优化光合作用的能力下降。

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