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    • 35. 发明申请
    • Novel Herbicide Resistance Genes
    • 新型除草剂抗性基因
    • US20110203017A1
    • 2011-08-18
    • US12091896
    • 2006-10-27
    • Terry R. WrightJustin M. LiraTerence Anthony WalshDonald J. MerloJayakumar P. SamuelGaofeng Lin
    • Terry R. WrightJustin M. LiraTerence Anthony WalshDonald J. MerloJayakumar P. SamuelGaofeng Lin
    • A01H5/00C12N5/10A01N55/00A01N39/04C07H21/04A01P13/00A01H5/10
    • C12N15/8274C12N9/0071C12N15/8275
    • 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.
    • 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。
    • 36. 发明申请
    • NOVEL HERBICIDE RESISTANCE GENES
    • 新型抗除草剂基因
    • US20110124503A1
    • 2011-05-26
    • US12951813
    • 2010-11-22
    • Terry R. WrightJustin M. LiraDonald J. MerloNicole L. Arnold
    • Terry R. WrightJustin M. LiraDonald J. MerloNicole L. Arnold
    • A01N57/20A01N39/02A01H5/00A01N47/34C12Q1/68G01N33/53A01P13/00A01P13/02
    • C12N15/8274C12N9/0069C12N15/8209
    • The subject invention provides novel plants that are not only resistant to 2,4-D and other phenoxy auxin herbicides, but also to aryloxyphenoxypropionate 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 alone or “stacked” together with another herbicide resistance gene, preferably a glyphosate resistance gene, so as to provide broader and more robust weed control, increased treatment flexibility, and improved herbicide resistance management options. More specifically, preferred enzymes and genes for use according to the subject invention are referred to herein as AAD (aryloxyalkanoate dioxygenase) genes and proteins. No α-ketoglutarate-dependent dioxygenase enzyme has previously been reported to have the ability to degrade herbicides of different chemical classes and modes of action. This highly novel discovery is the basis of significant herbicide tolerant crop trait opportunities as well as development of selectable marker technology. The subject invention also includes related methods of controlling weeds. The subject invention enables novel combinations of herbicides to be used in new ways. Furthermore, the subject invention provides novel methods of preventing the formation of, and controlling, weeds that are resistant (or naturally more tolerant) to one or more herbicides such as glyphosate.
    • 本发明提供了不仅对2,4-D和其它苯氧基生长素除草剂具有抗性的新型植物,而且还涉及芳氧基苯氧基丙酸酯除草剂。 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。 本发明还包括单独产生本发明的一种或多种酶或与另一种除草剂抗性基因“优选地基于草甘膦抗性”基因“堆叠”的植物,以便提供更广泛和更强大的杂草控制,增加的治疗灵活性,和 改善除草剂抗性管理方案。 更具体地,根据本发明使用的优选的酶和基因在本文中称为AAD(芳氧基链烷酸酯加氧酶)基因和蛋白质。 据报道,没有α-酮戊二酸依赖性双加氧酶具有降解不同化学类别和作用模式的除草剂的能力。 这种高度新颖的发现是显着的除草剂耐受性作物性状机会以及可选择标记技术的发展的基础。 本发明还包括控制杂草的相关方法。 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(或天然更耐受)的杂草的形成和控制的新方法。
    • 37. 发明授权
    • Pesticidally active proteins and polynucleotides obtainable from Paenibacillus species
    • 杀虫活性蛋白质和可从Paenibacillus物种获得的多核苷酸
    • US07902334B2
    • 2011-03-08
    • US11775663
    • 2007-07-10
    • Scott B. BintrimScott A. BevanBaolong ZhuDonald J. Merlo
    • Scott B. BintrimScott A. BevanBaolong ZhuDonald J. Merlo
    • C07K14/00
    • C12P19/34C07K14/195C12P21/02C12Q1/689C12Q2600/142
    • The subject invention provides unique biological alternatives for pest control. More specifically, the present invention relates to novel pesticidal proteins, novel sources of pesticidal proteins, polynucleotides that encode such toxins, and to methods of using these toxins to control insects and other plant pests. The subject invention relates to the surprising discovery that Paenibacillus species, and proteins therefrom, have toxicity to lepidopterans. There have been no known reports of a Paenibacillus species, strain, or protein having toxicity to lepidopterans. This is also the first known example of a Paenibacillus Cry protein that is toxic to lepidopterans. Furthermore, this is the first known report of a Paenibacillus having toxin complex (TC)-like proteins. The DAS1529 isolate disclosed here is also the first known example of a natural bacterium that produces both a Cry toxin and TC proteins. The subject invention also relates to new classes of Cry and TC proteins that are pesticidally active.
    • 本发明提供了用于病虫害防治的独特的生物学替代物。 更具体地,本发明涉及新型杀虫蛋白,杀虫蛋白的新来源,编码这种毒素的多核苷酸,以及使用这些毒素来控制昆虫和其它植物害虫的方法。 本发明涉及令​​人惊奇的发现:Paenibacillus物种及其蛋白质对鳞翅目病毒具有毒性。 没有已知的具有对鳞翅目昆虫具有毒性的Paenibacillus物种,菌株或蛋白质的报道。 这也是对鳞翅目昆虫具有毒性的第一个已知的Paenibacillus Cry蛋白的例子。 此外,这是具有毒素复合物(TC)样蛋白质的Paenibacillus的第一个已知报告。 此处公开的DAS1529分离物也是产生Cry毒素和TC蛋白质的天然细菌的第一已知实例。 本发明还涉及具有杀虫活性的新类型的Cry和TC蛋白。