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Seed-specific expression of a bacterial phosphoenolpyruvate carboxylase in Vicia narbonensis increases protein content and improves carbon economy

机译:蚕豆细菌磷丙酮酸羧化酶的种子特异性表达增加了蛋白质含量并改善了碳经济

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An ambitious aim in plant breeding and biotechnology is to increase the protein content of crop seeds used for food and feed. Using an approach to manipulate assimilate partitioning, we succeeded in elevating the protein content in legume seeds up to 50%. Transgenic bean plants were generated which express a Corynebacterium glutamicum phosphoenolpyruvate carboxylase (PEPC) in a seed-specific manner. The bacterial enzyme was not feedback inhibited by malate. Transgenic seeds showed a higher [C-14]-CO2 uptake and about a threefold increased incorporation of labelled carbon into proteins. Changed metabolite profiles of maturing cotyledons indicated a shift of metabolic fluxes from sugars/starch into organic acids and free amino acids. These changes were consistent with an increased carbon flow through the anaplerotic pathway catalysed by PEPC. Consequently, transgenic seeds accumulated up to 20% more protein per gram seed dry weight. Additionally, seed dry weight was higher by 20%-30%. We conclude that PEPC in seeds is a promising target for molecular plant breeding.
机译:植物育种和生物技术的雄心勃勃的目标是增加用于食物和饲料的作物种子的蛋白质含量。使用一种操纵同化分区的方法,我们成功地将豆类种子中的蛋白质含量提升至50%。产生转基因豆植物,其以种子特异性方式表达谷氨酸谷氨酸氨基甲醇丙烯酸盐羧基酶(Pepc)。细菌酶未通过苹果酸抑制反馈。转基因种子显示出较高的[C-14] -CO2吸收,并且大约三倍加入标记的碳掺入蛋白质中。改变了成熟的子叶的代谢物谱表明从糖/淀粉转移到有机酸和游离氨基酸中的代谢助焊剂的转变。这些变化与通过Pepc催化的anaplerotic途径增加的碳流量一致。因此,转基因种子每克种子干重累积高达20%的蛋白质。另外,种子干重高20%-30%。我们得出结论,种子中的Pepc是分子植物育种的有希望的目标。

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