首页> 美国卫生研究院文献>The Plant Cell >InsP6-Sensitive Variants of the Gle1 mRNA Export Factor Rescue Growth and Fertility Defects of the ipk1 Low-Phytic-Acid Mutation in Arabidopsis
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InsP6-Sensitive Variants of the Gle1 mRNA Export Factor Rescue Growth and Fertility Defects of the ipk1 Low-Phytic-Acid Mutation in Arabidopsis

机译:InsP6敏感性变体的Gle1 mRNA出口因子拯救生长和ipk1低植酸突变的生育力缺陷拟南芥。

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摘要

Myo-inositol-1,2,3,4,5,6-hexakisphosphate (), also known as phytic acid, accumulates in large quantities in plant seeds, serving as a phosphorus reservoir, but is an animal antinutrient and an important source of water pollution. Here, we report that Gle1 (GLFG lethal 1) in conjunction with functions as an activator of the ATPase/RNA helicase LOS4 (low expression of osmotically responsive genes 4), which is involved in mRNA export in plants, supporting the Gle1-InsP6-Dbp5 (LOS4 homolog) paradigm proposed in yeast. Interestingly, plant Gle1 proteins have modifications in several key residues of the binding pocket, which reduce the basicity of the surface charge. Arabidopsis thaliana Gle1 variants containing mutations that increase the basic charge of the binding surface show increased sensitivity to concentrations for the stimulation of LOS4 ATPase activity in vitro. Expression of the Gle1 variants with enhanced sensitivity rescues the mRNA export defect of the ipk1 (inositol 1,3,4,5,6-pentakisphosphate 2-kinase) -deficient mutant and, furthermore, significantly improves vegetative growth, seed yield, and seed performance of the mutant. These results suggest that Gle1 is an important factor responsible for mediating functions in plant growth and reproduction and that Gle1 variants with increased sensitivity may be useful for engineering high-yielding low-phytate crops.
机译:肌醇-1,2,3,4,5,6-己基磷酸(植酸)大量积累在植物种子中,用作磷的储库,但它是一种动物抗营养剂,是植物的重要养分来源水污染。在这里,我们报告Gle1(GLFG致死性1)结合作为ATPase / RNA解旋酶LOS4(渗透压反应基因4的低表达)的激活物,它参与植物的mRNA输出,支持Gle1-InsP6-酵母中提出的Dbp5(LOS4同源物)范例。有趣的是,植物Gle1蛋白在结合袋的几个关键残基中都有修饰,从而降低了表面电荷的碱性。含有增加结合表面碱性电荷的突变的拟南芥Gle1变体对体外刺激LOS4 ATPase活性的浓度显示出更高的敏感性。具有增强的敏感性的Gle1变体的表达挽救了ipk1(肌醇1,3,4,5,6-五磷酸二激酶2激酶)缺陷型突变体的mRNA出口缺陷,而且大大改善了营养生长,种子产量和种子突变体的性能。这些结果表明,Gle1是负责介导植物生长和繁殖功能的重要因素,而具有更高灵敏度的Gle1变体可能对工程化高产低植酸盐作物很有用。

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