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首页> 外文期刊>Functional Plant Biology >Heterologous expression of rice RNA-binding glycine-rich (RBG) gene OsRBGD3 in transgenic Arabidopsis thaliana confers cold stress tolerance
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Heterologous expression of rice RNA-binding glycine-rich (RBG) gene OsRBGD3 in transgenic Arabidopsis thaliana confers cold stress tolerance

机译:在转基因拟南芥中的水稻RNA结合甘氨酸富含甘氨酸富含(RBG)基因OSRBGD3的异源表达意识别赋予冷应力耐受性

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摘要

Imparting cold stress tolerance to crops is a major challenge in subtropical agriculture. New genes conferring cold tolerance needs to be identified and characterised for sustainable crop production in low-temperature stress affected areas. Here we report functional characterisation of OsRBGD3, classified previously as a class D glycine-rich RNA recognition motif (RRM) containing proteins from a drought-tolerant Indica rice cultivar N22. The gene was isolated by screening yeast one-hybrid library using the minimal promoter region of the OsMYB38 that is necessary for cold stress-responsive expression. OsRBGD3 exhibited cold, drought and salt stress inductive expression in a drought tolerant N22 rice cultivar as compared with susceptible variety IR64. OsRBGD3 was found to be localised to both nuclear and cytoplasmic subcellular destinations. Constitutive overexpression of the OsRBGD3 in transgenic Arabidopsis conferred tolerance to cold stress. ABA sensitivity was also observed in transgenic lines suggesting the regulatory role of this gene in the ABA signalling pathway. OsRBGD3 overexpression also attributed to significant root development and early flowering in transgenics. Hence, OsRBGD3 could be an important target for developing cold tolerant early flowering rice and other crops' genotypes for increasing production in low temperature affected areas.
机译:赋予作物的冷应力耐受性是亚热带农业的主要挑战。需要识别赋予耐冷耐寒性的新基因,并表征低温应激影响地区的可持续作物生产。在这里,我们报告了OSRBGD3的功能表征,以前作为含有来自耐旱籼稻品种N22的含有蛋白质的D类富含甘氨酸的RNA识别基序(RRM)。通过筛选酵母单杂交文库使用对冷应激响应表达所必需的蛋白酶的最小启动子区来分离基因。与易感品种IR64相比,OSRBGD3在干旱耐受N22水稻品种中表现出冷,干旱和盐胁迫感应表达。发现OSRBGD3本地化为核和细胞质亚细胞目的地。转基因拟南芥中OSRBGD3的组成型过表达赋予冷应激的耐受性。在转基因中也观察到ABA敏感性,表明该基因在ABA信号通路中的调节作用。 OSRBGD3过表达也归因于转基因的重大根部开发和早期开花。因此,OSRBGD3可能是发展耐寒性早期开花水稻和其他作物基因型的重要目标,用于增加低温影响区域的产量。

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