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Multigene manipulation of photosynthetic carbon assimilation increases CO2 fixation and biomass yield in tobacco

机译:光合碳同化的多基因操纵提高了烟草的CO2固定率和生物量产量

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摘要

Over the next 40 years it has been estimated that a 50% increase in the yield of grain crops such as wheat and rice will be required to meet the food and fuel demands of the increasing world population. Transgenic tobacco plants have been generated with altered combinations of sedoheptulose-1,7-bisphosphatase, fructose-1,6-bisphosphate aldolase, and the cyanobacterial putative-inorganic carbon transporter B, ictB, of which have all been identified as targets to improve photosynthesis based on empirical studies. It is shown here that increasing the levels of the three proteins individually significantly increases the rate of photosynthetic carbon assimilation, leaf area, and biomass yield. Furthermore, the daily integrated measurements of photosynthesis showed that mature plants fixed between 12–19% more CO2 than the equivalent wild-type plants. Further enhancement of photosynthesis and yield was observed when sedoheptulose-1,7-bisphosphatase, fructose-1,6-bisphosphate aldolase, and ictB were over-expressed together in the same plant. These results demonstrate the potential for the manipulation of photosynthesis, using multigene-stacking approaches, to increase crop yields.
机译:在未来的40年中,据估计,将需要增加谷物作物(如小麦和大米)的产量50%,以满足日益增长的世界人口对粮食和燃料的需求。转基因烟草植物产生了改变的sedoheptulose-1,7-双磷酸酶,果糖-1,6-双磷酸醛缩酶和蓝细菌推定的无机碳转运蛋白B ictB的组合,它们均被确定为改善光合作用的目标基于经验研究。在此表明,分别增加这三种蛋白质的水平会显着提高光合碳同化率,叶面积和生物量产量。此外,对光合作用的每日综合测量表明,成熟植物比同等的野生型植物固定的二氧化碳多12-19%。当sedoheptulose-1,7-双磷酸酶,果糖-1,6-双磷酸醛缩酶和ictB在同一株植物中一起过表达时,观察到光合作用和产量的进一步提高。这些结果证明了使用多基因堆叠方法进行光合作用的潜力,以增加农作物的产量。

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