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    • 8. 发明授权
    • Proteins imparting boron-tolerance and genes thereof
    • 赋予耐硼性的蛋白质及其基因
    • US07666678B2
    • 2010-02-23
    • US11522168
    • 2006-09-15
    • Toru FujiwaraAkira Nozawa
    • Toru FujiwaraAkira Nozawa
    • C12N15/81
    • C07K14/415C12N15/8271
    • The present invention provides genes and proteins having possibilities to generate plants having tolerance against excessive boron, which can confer a boric acid tolerance to organisms. 5 types of genes that can confer a boric acid tolerance to yeast, such as AtPAB2, AtRBP47c′, AtRPS20B, AtMYB13 and AtMYB68, AtRBP45a, AtRBP45b, AtRBP45c, AtRBP45d, AtRBP47a, AtRBP47b, AtRBP47c, AtUBP1a, AtUBP1b and AtUBP1c which were found by expressing several genes of higher plant Arabidopsis thaliana in yeast that is a organism model of eukaryote. Further, a key to the toxicity mechanism of boric acid exists in the specific inhibition of splicing, and a gene related to enhancement of splicing efficiency also confers a boric acid tolerance.
    • 本发明提供具有产生对过量硼具有耐受性的植物的可能性的基因和蛋白质,其可以赋予对生物体的硼酸耐受性。 可以赋予酵母硼酸耐受性的5种类型,例如AtPAB2,AtRBP47c',AtRPS20B,AtMYB13和AtMYB68,AtRBP45a,AtRBP45b,AtRBP45c,AtRBP45d,AtRBP47a,AtRBP47b,AtRBP47c,AtUBP1a,AtUBP1b和AtUBP1c。 在真核生物模型的酵母中表达高等植物拟南芥的几种基因。 此外,硼酸的毒性机制的关键存在于剪接的特异性抑制中,与剪接效率的提高有关的基因也赋予硼酸耐受性。
    • 9. 发明申请
    • Proteins imparting boron-tolerance and genes thereof
    • 赋予耐硼性的蛋白质及其基因
    • US20070079394A1
    • 2007-04-05
    • US11522168
    • 2006-09-15
    • Toru FujiwaraAkira Nozawa
    • Toru FujiwaraAkira Nozawa
    • A01H1/00C07H21/04C12N15/82C12N5/04C12N1/18C07K14/395C07K14/415
    • C07K14/415C12N15/8271
    • The present invention provides genes and proteins having possibilities to generate plants having tolerance against excessive boron, which can confer a boric acid tolerance to organisms. 5 types of genes that can confer a boric acid tolerance to yeast, such as AtPAB2, AtRBP47c′, AtRPS20B, AtMYB13 and AtMYB68, AtRBP45a, AtRBP45b, AtRBP45c, AtRBP45d, AtRBP47a, AtRBP47b, AtRBP47c, AtUBP1a, AtUBP1b and AtUBP1c which were found by expressing several genes of higher plant Arabidopsis thaliana in yeast that is a organism model of eukaryote. Further, a key to the toxicity mechanism of boric acid exists in the specific inhibition of splicing, and a gene related to enhancement of splicing efficiency also confers a boric acid tolerance.
    • 本发明提供具有产生对过量硼具有耐受性的植物的可能性的基因和蛋白质,其可以赋予对生物体的硼酸耐受性。 可以赋予酵母硼酸耐受性的5种类型,例如AtPAB2,AtRBP47c',AtRPS20B,AtMYB13和AtMYB68,AtRBP45a,AtRBP45b,AtRBP45c,AtRBP45d,AtRBP47a,AtRBP47b,AtRBP47c,AtUBP1a,AtUBP1b和AtUBP1c。 在真核生物模型的酵母中表达高等植物拟南芥的几种基因。 此外,硼酸的毒性机制的关键存在于剪接的特异性抑制中,与剪接效率的提高有关的基因也赋予硼酸耐受性。