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    • 3. 发明授权
    • Method for transforming monocotyledons
    • 单子叶植物的转化方法
    • US07060876B2
    • 2006-06-13
    • US09229324
    • 1999-01-13
    • Yukoh HieiToshihiko Komari
    • Yukoh HieiToshihiko Komari
    • A01H1/00A01H5/00C07H2/04C12N15/82C12N15/84
    • C12N15/8205
    • The invention relates to a method for transforming a monocotyledonous plant. The time required from transformation to regeneration of a plant is shorter using the inventive method so that the frequency of emergence of mutants is smaller than the conventional methods. The inventive method may be generally applied even to the plants for which a regeneration method from a protoplast to a plant has not been established, and with which the preparation of the material to be subjected to the method is easy. That is, the present invention provides a method for transforming a monocotyledonous plant, comprising contacting a cultured tissue of said monocotyledonous plant during dedifferentiation thereof obtained by culturing an explant on a dedifferentiation-inducing medium for less than 7 days with a bacterium belonging to the genus Agrobacterium containing a super binary vector having the virulence region of a Ti plasmid, left and right border sequences of T-DNA of a Ti plasmid or an Ri plasmid of a bacterium belonging to the genus Agrobacterium, and a desired gene located between said left and right border sequences.
    • 本发明涉及一种用于转化单子叶植物的方法。 使用本发明的方法从植物的转化到再生所需的时间更短,使得突变体的出现频率比常规方法小。 本发明的方法通常可以应用于从原生质体到植物的再生方法尚未建立的植物,并且通过该方法对待处理的材料的制备是容易的。 也就是说,本发明提供了一种用于转化单子叶植物的方法,包括使所述单子叶植物的去分化过程中的培养的组织与通过在去分化诱导培养基上培养少于7天的外植体与属于该属的细菌接触 含有具有Ti质粒的毒力区域的超级二元载体的农杆菌,Ti质粒的T-DNA的左侧和右侧边界序列或属于农杆菌属的细菌的Ri质粒,以及位于所述左侧和 右边界序列
    • 6. 发明授权
    • Dog-mouse heterohybridoma and gene fragment coding for constant region
of canine immunoglobulins
    • 犬小鼠异源杂交瘤和编码犬免疫球蛋白恒定区的基因片段
    • US5852183A
    • 1998-12-22
    • US646981
    • 1996-05-08
    • Hiroaki MaedaYasuyuki EdaKazuhiko KimachiYoichi OnoSachio Tokiyoshi
    • Hiroaki MaedaYasuyuki EdaKazuhiko KimachiYoichi OnoSachio Tokiyoshi
    • A61K39/00C07K16/46C12N5/26C12N15/13C07H2/04C07H21/02
    • C07K16/462A61K39/00C07K2317/24
    • A gene fragment which comprises a DNA sequence coding for an amino acid sequence of a constant region of canine immunoglobulin lambda chain; a gene fragment which comprises a DNA sequence coding for an amino acid sequence of a constant region of canine immunoglobulin kappa chain; a gene fragment which comprises a DNA sequence coding for the constant region of canine immunoglobulin gamma chain; a recombinant DNA molecule coding for an amino acid sequence of a mouse-dog chimeric antibody which comprises a gene fragment coding for an amino acid sequence of a variable region of a mouse immunoglobulin and a gene fragment coding for an amino acid sequence of a constant region of a canine immunoglobulin wherein the latter gene fragment; a polypeptide of a mouse-dog chimeric antibody which is expressed from a cell transformed with an expression vector for cells wherein said recombinant DNA molecule cording for an amino acid sequence of the mouse-dog chimeric antibody is incorporated; a dog-mouse heterohybridoma which produces canine immunoglobulin; and a process for preparing a canine immunoglobulin gene.
    • 一种基因片段,其包含编码犬免疫球蛋白λ链的恒定区的氨基酸序列的DNA序列; 基因片段,其包含编码犬免疫球蛋白κ链恒定区的氨基酸序列的DNA序列; 包含编码犬免疫球蛋白γ链的恒定区的DNA序列的基因片段; 编码小鼠 - 狗嵌合抗体的氨基酸序列的重组DNA分子,其包含编码小鼠免疫球蛋白的可变区的氨基酸序列的基因片段和编码恒定区的氨基酸序列的基因片段 的犬免疫球蛋白,其中后者基因片段; 从用细胞表达载体转化的细胞中表达小鼠 - 狗嵌合抗体的多肽,其中并入所述针对小鼠 - 狗嵌合抗体的氨基酸序列的重组DNA分子; 产生犬免疫球蛋白的狗 - 小鼠异源杂交瘤; 以及制备犬免疫球蛋白基因的方法。