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The expression of a recombinant glycolate dehydrogenase polyprotein in potato (Solanum tuberosum) plastids strongly enhances photosynthesis and tuber yield

机译:重组乙醇酸脱氢酶多蛋白在马铃薯(Solanum tuberosum)质体中的表达大大增强了光合作用和块茎产量

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摘要

We have increased the productivity and yield of potato (Solanum tuberosum) by developing a novel method to enhance photosynthetic carbon fixation based on expression of a polyprotein (DEFp) comprising all three subunits (D, E and F) of Escherichia coli glycolate dehydrogenase (GlcDH). The engineered polyprotein retained the functionality of the native GlcDH complex when expressed in E. coli and was able to complement mutants deficient for the D, E and F subunits. Transgenic plants accumulated DEFp in the plastids, and the recombinant protein was active in planta, reducing photorespiration and improving CO2 uptake with a significant impact on carbon metabolism. Transgenic lines with the highest DEFp levels and GlcDH activity produced significantly higher levels of glucose (5.8-fold), fructose (3.8-fold), sucrose (1.6-fold) and transitory starch (threefold), resulting in a substantial increase in shoot and leaf biomass. The higher carbohydrate levels produced in potato leaves were utilized by the sink capacity of the tubers, increasing the tuber yield by 2.3-fold. This novel approach therefore has the potential to increase the biomass and yield of diverse crops.
机译:通过开发一种新的方法来增强光合作用的碳固定,我们提高了马铃薯(Solanum tuberosum)的生产力和产量,该蛋白基于包含乙醇酸乙醇酸脱氢酶(GlcDH)的所有三个亚基(D,E和F)的多蛋白(DEFp)的表达)。当在大肠杆菌中表达时,工程化的多蛋白保留了天然GlcDH复合物的功能,并且能够补充D,E和F亚基缺陷的突变体。转基因植物在质体中积累了DEFp,重组蛋白在植物中具有活性,减少了光呼吸并提高了CO2的吸收,对碳代谢产生了显着影响。具有最高DEFp水平和GlcDH活性的转基因品系产生的葡萄糖(5.8倍),果糖(3.8倍),蔗糖(1.6倍)和瞬时淀粉(3倍)显着更高的水平,导致芽和叶片生物量。马铃薯叶中产生的较高碳水化合物含量被块茎的吸收能力所利用,使块茎产量提高了2.3倍。因此,这种新方法具有增加多种作物生物量和产量的潜力。

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