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Metabolic engineering with Dof1 transcription factor in plants: Improved nitrogen assimilation and growth under low-nitrogen conditions

机译:具有Dof1转录因子的植物代谢工程:在低氮条件下改善了氮的吸收和生长

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摘要

Utilization of transcription factors might be a powerful approach to modification of metabolism for a generation of crops having superior characteristics because a single transcription factor frequently regulates coordinated expression of a set of key genes for respective pathways. Here, we apply the plant-specific Dof1 transcription factor to improve nitrogen assimilation, the essential metabolism including the primary assimilation of ammonia to carbon skeletons to biosynthesize amino acids and other organic compounds involving nitrogen in plants. Expressing Dof1 induced the up-regulation of genes encoding enzymes for carbon skeleton production, a marked increase of amino acid contents, and a reduction of the glucose level in transgenic Arabidopsis. The results suggest cooperative modification of carbon and nitrogen metabolisms on the basis of their intimate link. Furthermore, elementary analysis revealed that the nitrogen content increased in the Dof1 transgenic plants (≈30%), indicating promotion of net nitrogen assimilation. Most significantly, the Dof1 transgenic plants exhibit improved growth under low-nitrogen conditions, an agronomically important trait. These results highlight the great utility of transcription factors in engineering metabolism in plants.
机译:利用转录因子可能是一代具有优良特性的农作物的代谢修饰的有效方法,因为单个转录因子经常调节各个途径的一组关键基因的协调表达。在这里,我们应用植物特有的Dof1转录因子来改善氮同化作用,氮的基本代谢包括氨与碳骨架的主要同化作用,以生物合成氨基酸和植物中其他涉及氮的有机化合物。表达Dof1可以诱导编码碳骨架酶的基因的上调,氨基酸含量的显着增加以及转基因拟南芥中葡萄糖水平的降低。结果表明碳和氮代谢的密切联系的基础上的合作修改。此外,元素分析表明,Dof1转基因植物中的氮含量增加(约30%),表明促进了净氮同化。最重要的是,Dof1转基因植物在低氮条件下(农艺上重要的性状)表现出改善的生长。这些结果突出了转录因子在植物工程代谢中的巨大效用。

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