Novel Herbicide Resistance Genes
    4.
    发明申请
    Novel Herbicide Resistance Genes 有权
    新型除草剂抗性基因

    公开(公告)号:US20110203017A1

    公开(公告)日:2011-08-18

    申请号:US12091896

    申请日:2006-10-27

    CPC classification number: C12N15/8274 C12N9/0071 C12N15/8275

    Abstract: The subject invention provides novel plants that are not only resistant to 2,4-D, but also to pyridyloxyacetate herbicides. Heretofore, there was no expectation or suggestion that a plant with both of these advantageous properties could be produced by the introduction of a single gene. The subject invention also includes plants that produce one or more enzymes of the subject invention “stacked” together with one or more other herbicide resistance genes. The subject invention enables novel combinations of herbicides to be used in new ways. Furthermore, the subject invention provides novel methods of preventing the development of, and controlling, strains of weeds that are resistant to one or more herbicides such as glyphosate. The preferred enzyme and gene for use according to the subject invention are referred to herein as AAD-12 (AryloxyAlkanoate Dioxygenase). This highly novel discovery is the basis of significant herbicide tolerant crop trait and selectable marker opportunities.

    Abstract translation: 本发明提供了不仅对2,4-D有抗性的新型植物,而且还提供了对吡啶氧基乙酸酯除草剂的抗性。 迄今为止,没有任何期望或建议,通过引入单一基因可以产生具有这两种有利性质的植物。 本发明还包括与一种或多种其它除草剂抗性基因一起产生本发明一种或多种酶“堆叠”的植物。 本发明能够以新的方式使用除草剂的新型组合。 此外,本发明提供了防止对一种或多种除草剂如草甘膦具有抗性的杂草的发育和控制菌株的新方法。 根据本发明使用的优选酶和基因在本文中称为AAD-12(丙烯酰氧基烷酸酯加氧酶)。 这种高度新颖的发现是显着的除草剂耐受性作物性状和选择性标记机会的基础。

    Plant peptide gamma-zein for delivery of biomolecules into plant cells
    5.
    发明授权
    Plant peptide gamma-zein for delivery of biomolecules into plant cells 有权
    植物肽γ-玉米蛋白,用于将生物分子递送到植物细胞中

    公开(公告)号:US08581036B2

    公开(公告)日:2013-11-12

    申请号:US13042565

    申请日:2011-03-08

    CPC classification number: C12N15/8206

    Abstract: A method of introducing a molecule of interest into a plant cell having a cell wall includes interacting a gamma-zein peptide with a molecule of interest to form a gamma-zein linked structure. The gamma-zein linked structure is then placed in contact with the plant cell having a cell wall, and allowing uptake of the gamma-zein linked structure into the plant cell. Alternatively, a gene of interest can be expressed in a plant cell having an intact cell wall by interacting a gamma-zein peptide with the gene of interest to form a gamma-zein linked gene structure, allowing uptake of the gamma-zein linked gene structure into the plant cell, and expressing the gene of interest in the plant cell and its progeny.

    Abstract translation: 将感兴趣的分子引入具有细胞壁的植物细胞中的方法包括将γ-玉米醇溶蛋白肽与感兴趣的分子相互作用以形成γ-玉米醇溶蛋白连接的结构。 然后将γ-玉米醇溶蛋白连接的结构与具有细胞壁的植物细胞接触,并允许将γ-玉米醇溶蛋白连接的结构摄取到植物细胞中。 或者,通过将γ-玉米醇溶蛋白肽与感兴趣的基因相互作用以形成γ-玉米醇溶蛋白连接的基因结构,可以在具有完整细胞壁的植物细胞中表达感兴趣的基因,从而允许γ-玉米醇溶蛋白连接的基因结构 进入植物细胞,并在植物细胞及其后代中表达感兴趣的基因。

    PLANT PEPTIDE GAMMA-ZEIN FOR DELIVERY OF BIOMOLECULES INTO PLANT CELLS
    9.
    发明申请
    PLANT PEPTIDE GAMMA-ZEIN FOR DELIVERY OF BIOMOLECULES INTO PLANT CELLS 有权
    用于将生物分子植入植物细胞的植物肽GAMMA-ZEIN

    公开(公告)号:US20110247100A1

    公开(公告)日:2011-10-06

    申请号:US13042565

    申请日:2011-03-08

    CPC classification number: C12N15/8206

    Abstract: A method of introducing a molecule of interest into a plant cell having a cell wall includes interacting a gamma-zein peptide with a molecule of interest to form a gamma-zein linked structure. The gamma-zein linked structure is then placed in contact with the plant cell having a cell wall, and allowing uptake of the gamma-zein linked structure into the plant cell. Alternatively, a gene of interest can be expressed in a plant cell having an intact cell wall by interacting a gamma-zein peptide with the gene of interest to form a gamma-zein linked gene structure, allowing uptake of the gamma-zein linked gene structure into the plant cell, and expressing the gene of interest in the plant cell and its progeny.

    Abstract translation: 将感兴趣的分子引入具有细胞壁的植物细胞中的方法包括将γ-玉米醇溶蛋白肽与感兴趣的分子相互作用以形成γ-玉米醇溶蛋白连接的结构。 然后将γ-玉米醇溶蛋白连接的结构与具有细胞壁的植物细胞接触,并允许将γ-玉米醇溶蛋白连接的结构摄取到植物细胞中。 或者,通过将γ-玉米醇溶蛋白肽与感兴趣的基因相互作用以形成γ-玉米醇溶蛋白连接的基因结构,可以在具有完整细胞壁的植物细胞中表达感兴趣的基因,从而允许γ-玉米醇溶蛋白连接的基因结构 进入植物细胞,并在植物细胞及其后代中表达感兴趣的基因。

    Herbicide resistance genes
    10.
    发明授权
    Herbicide resistance genes 有权
    除草剂抗性基因

    公开(公告)号:US08283522B2

    公开(公告)日:2012-10-09

    申请号:US12091896

    申请日:2006-10-27

    CPC classification number: C12N15/8274 C12N9/0071 C12N15/8275

    Abstract: The subject invention provides novel plants that are not only resistant to 2,4-D, but also to pyridyloxyacetate herbicides. Heretofore, there was no expectation or suggestion that a plant with both of these advantageous properties could be produced by the introduction of a single gene. The subject invention also includes plants that produce one or more enzymes of the subject invention “stacked” together with one or more other herbicide resistance genes. The subject invention enables novel combinations of herbicides to be used in new ways. Furthermore, the subject invention provides novel methods of preventing the development of, and controlling, strains of weeds that are resistant to one or more herbicides such as glyphosate. The preferred enzyme and gene for use according to the subject invention are referred to herein as AAD-12 (AryloxyAlkanoate Dioxygenase). This highly novel discovery is the basis of significant herbicide tolerant crop trait and selectable marker opportunities.

    Abstract translation: 本发明提供了不仅对2,4-D有抗性的新型植物,而且还提供了对吡啶氧基乙酸酯除草剂的抗性。 迄今为止,没有任何期望或建议,通过引入单一基因可以产生具有这两种有利性质的植物。 本发明还包括产生本发明一种或多种与一种或多种除草剂抗性基因堆叠在一起的酶的植物。 本发明能够以新的方式使用除草剂的新型组合。 此外,本发明提供了防止对一种或多种除草剂如草甘膦具有抗性的杂草的发育和控制菌株的新方法。 根据本发明使用的优选酶和基因在本文中称为AAD-12(丙烯酰氧基烷酸酯加氧酶)。 这种高度新颖的发现是显着的除草剂耐受性作物性状和选择性标记机会的基础。

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