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Flavodiiron proteins act as safety valve for electrons in Physcomitrella patens

机译:黄素二铁蛋白充当小立碗藓中电子的安全阀

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摘要

Photosynthetic organisms support cell metabolism by harvesting sunlight to fuel the photosynthetic electron transport. The flow of excitation energy and electrons in the photosynthetic apparatus needs to be continuously modulated to respond to dynamics of environmental conditions, and Flavodiiron (FLV) proteins are seminal components of this regulatory machinery in cyanobacteria. FLVs were lost during evolution by flowering plants, but are still present in nonvascular plants such as Physcomitrella patens. We generated P. patens mutants depleted in FLV proteins, showing their function as an electron sink downstream of photosystem I for the first seconds after a change in light intensity. flv knock-out plants showed impaired growth and photosystem I photoinhibition when exposed to fluctuating light, demonstrating FLV’s biological role as a safety valve from excess electrons on illumination changes. The lack of FLVs was partially compensated for by an increased cyclic electron transport, suggesting that in flowering plants, the FLV’s role was taken by other alternative electron routes.
机译:光合生物通过收集阳光以促进光合电子传输来支持细胞代谢。光合装置中的激发能和电子流需要不断地调节以响应环境条件的动态变化,而Flavodiiron(FLV)蛋白是这种蓝藻调节机制的重要组成部分。 FLV在开花植物的进化过程中丢失,但仍然存在于非血管植物中,例如小立碗藓。我们产生了缺失FLV蛋白的P. patens突变体,在光强度变化后的最初几秒钟内,它们显示出其作为光系统I下游电子沉陷的功能。 flv敲除植物暴露于变化的光线下时,生长受到损害,光系统I的光抑制能力减弱,这表明FLV的生物作用是作为安全阀,因为光照变化时电子过多。 FLV的缺乏可以通过增加循环电子传递来部分弥补,这表明在开花植物中,FLV的作用是由其他替代电子途径承担的。

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