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Enhanced drought tolerance in Arabidopsis via genetic manipulation aimed at the reduction of glucosamine-induced ROS generation

机译:通过减少葡萄糖胺诱导的ROS生成的基因操作提高拟南芥的耐旱性

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摘要

In animals, high glucose exerts some of its deleterious effects by activation of the hexosamine biosynthesis pathway (HBP), a branch of the glycolytic pathway that produces amino sugars (Daniels et al. in Mol Endocrinol 7:1041–1048, 1993; Du et al. in Proc Natl Acad Sci USA 97:12222–12226, 2000). Glucosamine (GlcN) is a naturally occurring amino sugar produced by amidation of fructose-6-phosphate. Previously, we observed that glucosamine (GlcN) inhibits hypocotyl elongation in Arabidopsis thaliana by a process involving the significant increase of reactive oxygen species. The present study investigated the relationship between GlcN-induced ROS generation and abiotic stress responses in Arabidopsis by generating two types of transgenic plant. Scavenging of endogenous GlcN by ectopic expression of E. coli glucosamine-6-phosphate deaminase (NagB) was observed to confer enhanced tolerance to oxidative, drought, and cold stress. Consistent with this result, overproduction of GlcN by the ectopic expression of E. coli glucosamine-6-phosphate synthase (GlmS) induced cell death at an early stage. Taken together, these data suggest that genetic manipulation of endogenous GlcN level can effectively lead to the generation of abiotic stress-tolerant transgenic crop plants.
机译:在动物体内,高葡萄糖通过激活己糖胺生物合成途径(HBP)来发挥其某些有害作用,后者是产生氨基糖的糖酵解途径的一个分支(Daniels等人,Mol Endocrinol 7:1041-1048,1993; Du等人) (例如,Proc Natl Acad Sci USA 97:12222-12226,2000)。葡糖胺(GlcN)是由果糖6-磷酸酰胺化产生的天然存在的氨基糖。以前,我们观察到葡糖胺(GlcN)通过涉及活性氧显着增加的过程抑制拟南芥中的下胚轴伸长。本研究通过产生两种类型的转基因植物来研究拟南芥中GlcN诱导的ROS产生与非生物胁迫反应之间的关系。观察到通过异位表达大肠杆菌氨基葡萄糖6-磷酸脱氨酶(NagB)清除内源性GlcN可增强对氧化,干旱和寒冷胁迫的耐受性。与此结果相一致,大肠杆菌异位表达氨基葡萄糖6磷酸合酶(GlmS)的异位表达会导致GlcN的过量产生,从而在早期导致细胞死亡。综上所述,这些数据表明内源性GlcN水平的基因操作可以有效地导致非生物胁迫耐受性转基因作物的产生。

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