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Overexpression of the Rieske FeS protein of the Cytochrome b6f complex increases C4 photosynthesis in Setaria viridis

机译:细胞色素b6f复合体的Rieske FeS蛋白的过表达增加了狗尾草中C4的光合作用

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摘要

C4 photosynthesis is characterised by a CO2 concentrating mechanism that operates between mesophyll and bundle sheath cells increasing CO2 partial pressure at the site of Rubisco and photosynthetic efficiency. Electron transport chains in both cell types supply ATP and NADPH for C4 photosynthesis. Cytochrome b6f is a key control point of electron transport in C3 plants. To study whether C4 photosynthesis is limited by electron transport we constitutively overexpressed the Rieske FeS subunit in Setaria viridis. This resulted in a higher Cytochrome b6f content in mesophyll and bundle sheath cells without marked changes in the abundances of other photosynthetic proteins. Rieske overexpression plants showed better light conversion efficiency in both Photosystems and could generate higher proton-motive force across the thylakoid membrane underpinning an increase in CO2 assimilation rate at ambient and saturating CO2 and high light. Our results demonstrate that removing electron transport limitations can increase C4 photosynthesis.
机译:C4光合作用的特征在于CO2浓缩机制,该机制在叶肉和束鞘细胞之间起作用,从而增加Rubisco部位的CO2分压和光合作用效率。两种细胞类型中的电子传输链都为C4光合作用提供了ATP和NADPH。细胞色素b6f是C3植物电子传递的关键控制点。为了研究C4的光合作用是否受到电子传输的限制,我们组成性地过量表达了狗尾草中的Rieske FeS亚基。这导致叶肉和束鞘细胞中细胞色素b6f含量更高,而其他光合蛋白的丰度却没有明显变化。 Rieske过表达植物在两种光系统中均显示出更好的光转换效率,并且可以在类囊体膜上产生更高的质子动力,从而增强了环境中的CO2同化率,并使CO2和高光饱和。我们的结果表明,消除电子传输限制可以提高C4光合作用。

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