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    • 7. 发明申请
    • PLANTS HAVING ENHANCED ABIOTIC STRESS TOLERANCE AND/OR ENHANCED YIELD-RELATED TRAITS AND A METHOD FOR MAKING THE SAME
    • 具有增强的耐应变性和/或增强的相关产品的植物及其制造方法
    • WO2010055024A1
    • 2010-05-20
    • PCT/EP2009/064883
    • 2009-11-10
    • BASF PLANT SCIENCE GMBHHATZFELD, YvesREUZEAU, ChristopheFRANKARD, ValerieSANZ MOLINERO, Ana Isabel
    • HATZFELD, YvesREUZEAU, ChristopheFRANKARD, ValerieSANZ MOLINERO, Ana Isabel
    • C12N15/82C07K14/415A01H5/00
    • C12N15/8261C07K14/415C12N15/8271C12N15/8273Y02A40/146
    • The present invention relates generally to the field of molecular biology and concerns a method for enhancing abiotic stress tolerance in plants by modulating expression in a plant of a nucleic acid encoding a cytochrome c oxidase (COX) VIIa subunit polypeptide (COX VIIa subunit). The present invention also concerns plants having modulated expression of a nucleic acid encoding a COX VIIa subunit, which plants have enhanced abiotic stress tolerance relative to corresponding wild type plants or other control plants. The invention also provides constructs useful in the methods of the invention. Furthermore, the present invention relates generally to the field of molecular biology and concerns a method for improving various plant growth characteristics by modulating expression in a plant of a nucleic acid encoding a YLD-ZnF polypeptide. The present invention also concerns plants having modulated expression of a nucleic acid encoding a YLD-ZnF polypeptide, which plants have improved growth characteristics relative to corresponding wild type plants or other control plants. The invention also provides constructs useful in the methods of the invention. Furthermore, the present invention relates generally to the field of molecular biology and concerns a method for enhancing abiotic stress tolerance in plants by modulating expression in a plant of a nucleic acid encoding a PKT (protein kinase with TPR repeat). The present invention also concerns plants having modulated expression of a nucleic acid encoding a PKT, which plants have enhanced abiotic stress tolerance relative to corresponding wild type plants or other control plants. The invention also provides constructs useful in the methods of the invention. Furthermore, the present invention relates generally to the field of molecular biology and concerns a method for improving various plant growth characteristics by modulating expression in a plant of a nucleic acid encoding a NOA (Nitric Oxide Associated) polypeptide. The present invention also concerns plants having modulated expression of a nucleic acid encoding a NOA polypeptide, which plants have improved growth characteristics relative to corresponding wild type plants or other control plants. The invention also provides constructs useful in the methods of the invention. Furthermore, the present invention relates generally to the field of molecular biology and concerns a method for improving various yield-related traits in plants by modulating expression in a plant of a nucleic acid encoding an Anti-silencing factor 1 (ASF1)-like polypeptide. The present invention also concerns plants having modulated expression of a nucleic acid encoding an ASF1-like polypeptide, which plants have enhanced yield-related traits relative to corresponding wild type plants or other control plants. The invention also provides constructs useful in the methods of the invention. Furthermore, the present invention relates generally to the field of molecular biology and concerns a method for enhancing abiotic stress tolerance in plants by modulating expression in a plant of a nucleic acid encoding a plant homeodomain finger (PHDF). The present invention also concerns plants having modulated expression of a nucleic acid encoding a PHDF, which plants have enhanced abiotic stress tolerance relative to corresponding wild type plants or other control plants. The invention also provides constructs useful in the methods of the invention. Furthermore, the present invention relates generally to the field of molecular biology and concerns a method for increasing various plant yield-related traits by increasing expression in a plant of a nucleic acid sequence encoding a group I multiprotein bridging factor 1 (MBF1) polypeptide. The present invention also concerns plants having increased expression of a nucleic acid sequence encoding a group I MBF1 polypeptide, which plants have increased yield-related traits relative to control plants. The invention additionally relates to nucleic acid sequences, nucleic acid constructs, vectors and plants containing said nucleic acid sequences.
    • 本发明一般涉及分子生物学领域,涉及通过调节植物中编码细胞色素c氧化酶(COX)VIIa亚基多肽(COX VIIa亚基)的核酸的表达来提高植物中非生物胁迫耐受性的方法。 本发明还涉及调节表达编码COX VIIa亚基的核酸的植物,该植物相对于相应的野生型植物或其它对照植物具有增强的非生物胁迫耐受性。 本发明还提供了可用于本发明方法的构建体。 此外,本发明一般涉及分子生物学领域,并且涉及通过调节植物中编码YLD-ZnF多肽的核酸的表达来改善各种植物生长特性的方法。 本发明还涉及具有调节表达编码YLD-ZnF多肽的核酸的植物,该植物相对于相应的野生型植物或其它对照植物具有改善的生长特性。 本发明还提供了可用于本发明方法的构建体。 此外,本发明一般涉及分子生物学领域,并且涉及通过调节植物中编码PKT(具有TPR重复的蛋白激酶)的核酸的表达来增强植物中非生物胁迫耐受性的方法。 本发明还涉及具有调节PKT核酸表达的植物,该植物相对于相应的野生型植物或其它对照植物具有增强的非生物胁迫耐受性。 本发明还提供了可用于本发明方法的构建体。 此外,本发明一般涉及分子生物学领域,并且涉及通过调节植物中编码NOA(一氧化氮相关)多肽的核酸的表达来改善各种植物生长特性的方法。 本发明还涉及调节表达编码NOA多肽的核酸的植物,该植物相对于相应的野生型植物或其它对照植物具有改善的生长特性。 本发明还提供了可用于本发明方法的构建体。 此外,本发明一般涉及分子生物学领域,并且涉及通过调节植物中编码抗沉默因子1(ASF1)样多肽的核酸的表达来改善植物中各种产量相关性状的方法。 本发明还涉及具有编码ASF1样多肽的核酸的调节表达的植物,该植物相对于相应的野生型植物或其它对照植物具有增强的产量相关性状。 本发明还提供了可用于本发明方法的构建体。 此外,本发明一般涉及分子生物学领域,并且涉及通过调节编码植物同位点地带(PHDF)的核酸的植物表达来提高植物中非生物胁迫耐受性的方法。 本发明还涉及具有调节表达编码PHDF的核酸的植物,该植物相对于相应的野生型植物或其他对照植物具有增强的非生物胁迫耐受性。 本发明还提供了可用于本发明方法的构建体。 此外,本发明一般涉及分子生物学领域,并且涉及通过增加植物中编码I型多蛋白桥连因子1(MBF1)多肽的核酸序列的表达来增加各种植物产量相关性状的方法。 本发明还涉及具有增加的编码I组MBF1多肽的核酸序列表达的植物,该植物相对于对照植物具有增加的产量相关性状。 本发明还涉及含有所述核酸序列的核酸序列,核酸构建体,载体和植物。
    • 8. 发明申请
    • PLANTS HAVING ENHANCED YIELD-RELATED TRAITS AND A METHOD FOR MAKING THE SAME
    • 具有增强的相关旅行者的植物及其制造方法
    • WO2009153208A1
    • 2009-12-23
    • PCT/EP2009/057190
    • 2009-06-10
    • BASF PLANT SCIENCE GMBHSanz Molinero, Ana IsabelHatzfeld, YvesFrankard, ValerieReuzeau, Christophe
    • Sanz Molinero, Ana IsabelHatzfeld, YvesFrankard, ValerieReuzeau, Christophe
    • C12N15/82A01H5/00C12N9/00C07K14/415
    • C12N15/8261C12N9/1007C12N15/8273
    • The present invention relates generally to the field of molecular biology and concerns a method for improving various plant growth characteristics by modulating expression in a plant of a nucleic acid sequence encoding a GS1 (Glutamine Synthase 1 ). The present invention also concerns plants having modulated expression of a nucleic acid sequence encoding a GS1, which plants have improved growth characteristics relative to corresponding wild type plants or other control plants. The invention also provides constructs useful in the methods of the invention. Furthermore, the present invention relates generally to the field of molecular biology and concerns a method for enhancing various plant yield-related traits by modulating expression in a plant of a nucleic acid sequence encoding a PEAMT (Phosphoethanolamine N- methyltransferase) polypeptide. The present invention also concerns plants having modulated expression of a nucleic acid sequence encoding a PEAMT, which plants have enhanced yield- related traits relative to corresponding wild type plants or other control plants. The invention also provides hitherto unknown PEAMT-encoding nucleic acid sequences, and constructs comprising the same, useful in performing the methods of the invention. Yet furthermore, the present invention relates generally to the field of molecular biology and concerns a method for increasing various plant seed yield-related traits by increasing expression in a plant of a nucleic acid sequence encoding a f atty a cyl- a cyl c arrier p rotein (ACP) t hioesterase B (FATB) polypeptide. The present invention also concerns plants having increased expression of a nucleic acid sequence encoding a FATB polypeptide, which plants have increased seed yield-related traits relative to control plants. The invention additionally relates to nucleic acid sequences, nucleic acid sequence constructs, vectors and plants containing said nucleic acid sequences. Even furthermore, the present invention relates generally to the field of molecular biology and concerns a method for improving various plant growth characteristics by modulating expression in a plant of a nucleic acid sequence encoding a LFY-like (LEAFY-like). The present invention also concerns plants having modulated expression of a nucleic acid sequence encoding a LFY-like, which plants have improved growth characteristics relative to corresponding wild type plants or other control plants. The invention also provides constructs useful in the methods of the invention.
    • 本发明一般涉及分子生物学领域,涉及通过调节植物中编码GS1(谷氨酰胺合酶1)的核酸序列表达来改善各种植物生长特性的方法。 本发明还涉及具有编码GS1的核酸序列的表达的植物,该植物相对于相应的野生型植物或其它对照植物具有改善的生长特性。 本发明还提供了可用于本发明方法的构建体。 此外,本发明一般涉及分子生物学领域,涉及通过调节植物中编码PEAMT(磷酸乙醇胺N-甲基转移酶)多肽的核酸序列表达来增强各种植物产量相关性状的方法。 本发明还涉及具有调节表达编码PEAMT的核酸序列的植物,该植物相对于相应的野生型植物或其它对照植物具有增强的产量相关性状。 本发明还提供迄今未知的编码PEAMT的核酸序列,以及包含该核酸序列的构建体,其可用于实施本发明的方法。 此外,本发明一般涉及分子生物学领域,并且涉及通过增加植物中编码脂肪酰 - 酰基载体蛋白(ACP)硫酯酶的核酸序列的表达来增加各种植物种子产量相关性状的方法 B(FATB)多肽。 本发明还涉及具有增加的编码FATB多肽的核酸序列表达的植物,该植物相对于对照植物具有增加的种子产量相关性状。 本发明还涉及含有所述核酸序列的核酸序列,核酸序列构建体,载体和植物。 即使此外,本发明一般涉及分子生物学领域,并且涉及通过调节植物中编码LFY样(LEAFY样)的核酸序列的表达来改善各种植物生长特性的方法。 本发明还涉及具有编码LFY样核酸序列的表达的植物,该植物相对于相应的野生型植物或其它对照植物具有改善的生长特性。 本发明还提供了可用于本发明方法的构建体。