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A physiological role of cyclic electron transport around photosystem I in sustaining photosynthesis under fluctuating light in rice

机译:稻米中光周期波动下电子在光系统I周围循环维持光合作用的生理作用

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摘要

Plants experience a highly variable light environment over the course of the day. To reveal the molecular mechanisms of their photosynthetic response to fluctuating light, we examined the role of two cyclic electron flows around photosystem I (CEF-PSI)—one depending on PROTON GRADIENT REGULATION 5 (PGR5) and one on NADH dehydrogenase-like complex (NDH)—in photosynthetic regulation under fluctuating light in rice (Oryza sativa L.). The impairment of PGR5-dependent CEF-PSI suppressed the photosynthetic response immediately after sudden irradiation, whereas the impairment of NDH-dependent CEF-PSI did not. However, the impairment of either PGR5-dependent or NDH-dependent CEF-PSl reduced the photosynthetic rate under fluctuating light, leading to photoinhibition at PSI and consequently a reduction in plant biomass. The results highlight that (1) PGR5-dependent CEF-PSI is a key regulator of rapid photosynthetic responses to high light intensity under fluctuating light conditions after constant high light; and (2) both PGR5-dependent and NDH-dependent CEF-PSI have physiological roles in sustaining photosynthesis and plant growth in rice under repeated light fluctuations. The highly responsive regulatory system managed by CEF-PSI appears able to optimize photosynthesis and plant growth under naturally fluctuating light conditions.
机译:在一天当中,植物会经历高度变化的光照环境。为了揭示它们对波动光的光合作用的分子机制,我们研究了光系统I(CEF-PSI)周围两个循环电子流的作用-一个依赖于质子梯度调节5(PGR5),另一个依赖于NADH脱氢酶样复合物( NDH)-在波动的光照下水稻(Oryza sativa L.)中的光合作用调节。 PGR5依赖的CEF-PSI的损害在突然照射后立即抑制了光合作用,而NDH依赖的CEF-PSI的损害没有抑制。然而,PGR5依赖性或NDH依赖性CEF-PS1的损伤降低了在波动光下的光合速率,导致在PSI处的光抑制,因此植物生物量减少。结果表明:(1)依赖PGR5的CEF-PSI是恒定的高光照后,在波动的光照条件下,对高光照强度快速光合响应的关键调节剂; (2)PGR5依赖型和NDH依赖型CEF-PSI在重复的光波动下均具有维持水稻光合作用和植物生长的生理作用。在自然波动的光照条件下,CEF-PSI管理的高响应性监管系统似乎能够优化光合作用和植物生长。

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