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首页> 外文期刊>Photosynthesis Research: An International Journal >Faster photosynthetic induction in tobacco by expressing cyanobacterial flavodiiron proteins in chloroplasts
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Faster photosynthetic induction in tobacco by expressing cyanobacterial flavodiiron proteins in chloroplasts

机译:通过在叶绿体中表达蓝藻黄藻素蛋白更快的光合诱导烟草

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Plants grown in the field experience sharp changes in irradiation due to shading effects caused by clouds, other leaves, etc. The excess of absorbed light energy is dissipated by a number of mechanisms including cyclic electron transport, photorespiration, and Mehler-type reactions. This protection is essential for survival but decreases photosynthetic efficiency. All phototrophs except angiosperms harbor flavodiiron proteins (Flvs) which relieve the excess of excitation energy on the photosynthetic electron transport chain by reducing oxygen directly to water. Introduction of cyanobacterial Flv1/Flv3 in tobacco chloroplasts resulted in transgenic plants that showed similar photosynthetic performance under steady-state illumination, but displayed faster recovery of various photosynthetic parameters, including electron transport and non-photochemical quenching during dark-light transitions. They also kept the electron transport chain in a more oxidized state and enhanced the proton motive force of dark-adapted leaves. The results indicate that, by acting as electron sinks during light transitions, Flvs contribute to increase photosynthesis protection and efficiency under changing environmental conditions as those found by plants in the field.
机译:由于云,其他叶片等引起的阴影效果,在场上生长的植物经历了辐射的急剧变化。通过包括循环电子传输,光素和Mehler型反应的多种机制来消散吸收光能量的过量。这种保护对于存活至关重要,但降低了光合效率。除高血管植物外,所有光疗法患者Flavodiiron蛋白(FLVS),通过将氧直接降至水中,通过将氧气减少到光合电子输送链上释放过量的激发能量。在烟草叶绿体中引入蓝藻FLV1 / FLV3导致转基因植物,其在稳态照明下显示出类似的光合作用性能,但展示了各种光合参数的速度更快,包括电子传输和在深光过渡期间的电子传输和非光化学淬火。它们还将电子传输链保持在更氧化的状态下,并增强了深色叶片的质子动力。结果表明,通过在光转变期间作为电子沉降,FLVS有助于提高在变化环境条件下的光合保护和效率,因为该植物中的植物中发现的那些。

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