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Rubisco 转化体系的光合特性表明光化学和叶肉导度的变化。

Photosynthetic characterization of Rubisco transplantomic lines reveals alterations on photochemistry and mesophyll conductance.

机构信息

Research Group on Plant Biology under Mediterranean Conditions, Universitat de les Illes Balears, Ctra. de Valldemossa Km.7.5, 07122 Palma, Spain.

出版信息

Photosynth Res. 2013 Jul;115(2-3):153-66. doi: 10.1007/s11120-013-9848-8. Epub 2013 May 24.

Abstract

Improving Rubisco catalysis is considered a promising way to enhance C3-photosynthesis and photosynthetic water use efficiency (WUE) provided the introduced changes have little or no impact on other processes affecting photosynthesis such as leaf photochemistry or leaf CO2 diffusion conductances. However, the extent to which the factors affecting photosynthetic capacity are co-regulated is unclear. The aim of the present study was to characterize the photochemistry and CO2 transport processes in the leaves of three transplantomic tobacco genotypes expressing hybrid Rubisco isoforms comprising different Flaveria L-subunits that show variations in catalysis and differing trade-offs between the amount of Rubisco and its activation state. Stomatal conductance (g s) in each transplantomic tobacco line matched wild-type, while their photochemistry showed co-regulation with the variations in Rubisco catalysis. A tight co-regulation was observed between Rubisco activity and mesophyll conductance (g m) that was independent of g s thus producing plants with varying g m/g s ratios. Since the g m/g s ratio has been shown to positively correlate with intrinsic WUE, the present results suggest that altering photosynthesis by modifying Rubisco catalysis may also be useful for targeting WUE.

摘要

提高 Rubisco 催化作用被认为是一种有前途的方法,可以增强 C3 光合作用和光合水分利用效率(WUE),前提是引入的变化对影响光合作用的其他过程(如叶片光化学或叶片 CO2 扩散导度)几乎没有或没有影响。然而,影响光合作用能力的因素在多大程度上受到共同调节尚不清楚。本研究的目的是描述三种表达含有不同 Flaveria L-亚基的杂种 Rubisco 同工型的转化烟草基因型叶片的光化学和 CO2 运输过程,这些 Flaveria L-亚基在催化作用方面存在差异,并且在 Rubisco 的数量与其激活状态之间存在不同的权衡。每个转化烟草品系的气孔导度(g s)与野生型相匹配,而它们的光化学表现出与 Rubisco 催化作用变化的共同调节。Rubisco 活性与叶肉导度(g m)之间观察到紧密的共同调节,这种调节与 g s 无关,从而产生具有不同 g m/g s 比值的植物。由于 g m/g s 比值已被证明与内在 WUE 呈正相关,因此本研究结果表明,通过改变 Rubisco 催化作用来改变光合作用也可能有助于提高 WUE。

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