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Overexpressing the H‐protein of the glycine cleavage system increases biomass yield in glasshouse and field‐grown transgenic tobacco plants

机译:过表达甘氨酸裂解系统的H蛋白增加了玻璃容器中的生物质产量和野外生长的转基因烟草植物

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Photorespiration is essential for C3 plants, enabling oxygenic photosynthesis through the scavenging of 2‐phosphoglycolate. Previous studies have demonstrated that overexpression of the L‐ and H‐proteins of the photorespiratory glycine cleavage system results in an increase in photosynthesis and growth in Arabidopsis thaliana. Here, we present evidence that under controlled environment conditions an increase in biomass is evident in tobacco plants overexpressing the H‐protein. Importantly, the work in this paper provides a clear demonstration of the potential of this manipulation in tobacco grown in field conditions, in two separate seasons. We also demonstrate the importance of targeted overexpression of the H‐protein using the leaf‐specific promoter ST‐LS1. Although increases in the H‐protein driven by this promoter have a positive impact on biomass, higher levels of overexpression of this protein driven by the constitutive CaMV 35S promoter result in a reduction in the growth of the plants. Furthermore in these constitutive overexpressor plants, carbon allocation between soluble carbohydrates and starch is altered, as is the protein lipoylation of the enzymes pyruvate dehydrogenase and alpha‐ketoglutarate complexes. Our data provide a clear demonstration of the positive effects of overexpression of the H‐protein to improve yield under field conditions.
机译:光孔对于C3植物至关重要,通过清除2-磷酸糖分来实现含氧光合作用。以前的研究表明,光环甘氨酸裂解系统的L-和H蛋白的过度表达导致拟南芥的光合作用和生长增加。在这里,我们提出了在受控环境条件下,生物质的增加在过表达H蛋白的烟草植物中是显而易见的。重要的是,本文的工作明确证明了在两个独立的季节中在田间条件下种植的这种操纵的潜力。我们还证明了使用叶特异性启动子ST-LS1对H蛋白的靶向过表达的重要性。尽管由该启动子驱动的H蛋白的增加对生物质产生正影响,但是由本构CAMV 35S启动子驱动的该蛋白质的较高水平的过度表达导致植物生长的降低。此外,在这些组成型过度抑制植物中,改变可溶性碳水化合物和淀粉之间的碳分配,因为酶丙酮酸脱氢酶和α-酮戊酸酯配合物的蛋白质脂肪酵母。我们的数据清楚地证明了H蛋白过表达的积极影响,以提高现场条件下的产量。

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