Polynucleotides derived from chickpea and uses thereof
    5.
    发明申请
    Polynucleotides derived from chickpea and uses thereof 有权
    衍生自鹰嘴豆的多核苷酸及其用途

    公开(公告)号:US20120159668A1

    公开(公告)日:2012-06-21

    申请号:US13393340

    申请日:2010-08-30

    CPC分类号: C12N15/8282 C07K14/415

    摘要: Polynucleotides isolated from chickpea are disclosed herein. The disclosed polynucleotides of the present invention provide genotype-dependent spatial information on the presence and relative abundance of each gene. The transcriptomic analysis of the polynucleotides revealed (649) non-cannonical genes besides many unexpected candidates with known biochemical functions, which have never been associated with pathostress-responsive transcriptome. The polynucleotides disclosed in the present invention can be used as a molecular tool for isolation of novel genes from plants that can be used for plant improvement. Further, the polynucleotide responsible for improving immunity against fungal pathogen in plants is disclosed herein. The present invention also provides a method of improving immunity against fungal pathogen in plants. Transgenic plants exhibiting improved immunity against fungal pathogen are also provided in the present invention.

    摘要翻译: 本文公开了从鹰嘴豆分离的多核苷酸。 所公开的本发明的多核苷酸提供关于每个基因的存在和相对丰度的基因型依赖性空间信息。 多核苷酸的转录组学分析显示(649)除了具有已知生物化学功能的许多意想不到的候选物之外的非大炮基因,其从未与病原体反应性转录组相关联。 本发明中公开的多核苷酸可用作用于分离可用于植物改良的植物中的新基因的分子工具。 此外,本文公开了负责提高植物中真菌病原体免疫力的多核苷酸。 本发明还提供了提高植物中真菌病原体免疫力的方法。 在本发明中也提供了表现出对真菌病原体免疫力的改良的转基因植物。

    Polynucleotides derived from chickpea and uses thereof
    6.
    发明授权
    Polynucleotides derived from chickpea and uses thereof 有权
    衍生自鹰嘴豆的多核苷酸及其用途

    公开(公告)号:US09163255B2

    公开(公告)日:2015-10-20

    申请号:US13393340

    申请日:2010-08-30

    IPC分类号: C12N15/82 C07K14/415

    CPC分类号: C12N15/8282 C07K14/415

    摘要: Polynucleotides isolated from chickpea are disclosed herein. The disclosed polynucleotides of the present invention provide genotype-dependent spatial information on the presence and relative abundance of each gene. The transcriptomic analysis of the polynucleotides revealed (649) non-cannonical genes besides many unexpected candidates with known biochemical functions, which have never been associated with pathostress-responsive transcriptome. The polynucleotides disclosed in the present invention can be used as a molecular tool for isolation of novel genes from plants that can be used for plant improvement. Further, the polynucleotide responsible for improving immunity against fungal pathogen in plants is disclosed herein. The present invention also provides a method of improving immunity against fungal pathogen in plants. Transgenic plants exhibiting improved immunity against fungal pathogen are also provided in the present invention.

    摘要翻译: 本文公开了从鹰嘴豆分离的多核苷酸。 所公开的本发明的多核苷酸提供关于每个基因的存在和相对丰度的基因型依赖性空间信息。 多核苷酸的转录组学分析显示(649)除了具有已知生物化学功能的许多意想不到的候选物之外的非大炮基因,其从未与病原体反应性转录组相关联。 本发明中公开的多核苷酸可用作用于分离可用于植物改良的植物中的新基因的分子工具。 此外,本文公开了负责提高植物中真菌病原体免疫力的多核苷酸。 本发明还提供了提高植物中真菌病原体免疫力的方法。 在本发明中也提供了表现出对真菌病原体免疫力的改良的转基因植物。

    Extra-cellular matrix localized ferritin for iron uptake, storage, and stress tolerance
    7.
    发明授权
    Extra-cellular matrix localized ferritin for iron uptake, storage, and stress tolerance 有权
    细胞外基质局部铁蛋白铁吸收,储存和应力耐受性

    公开(公告)号:US08163977B2

    公开(公告)日:2012-04-24

    申请号:US12308141

    申请日:2007-06-08

    IPC分类号: A01H5/00 A01H5/10 C12N15/85

    CPC分类号: C12N15/8271 C07K14/415

    摘要: The present invention relates to environmental stress responsive protein ferritin (CaFer1) of chickpea. The invention discloses identification, isolation and cloning of ECM-localized ferritin (CaFer1) of chickpea and its multifunctional role in nutrient uptake, storage and stress tolerance. Comparative proteomic analysis of the chickpea extra-cellular (ECM) was performed to identify novel components of dehydration stress signaling. In addition, the present invention relates a method for producing environmental stress tolerant transgenic plants over-expressing the said CaFer1 gene. The present invention further provides dehydration stress tolerant transgenic plants overexpressing dehydration-responsive extra cellular matrix (ECM) protein ferritin (CaFer1).

    摘要翻译: 本发明涉及鹰嘴豆的环境应激反应性蛋白质铁蛋白(CaFer1)。 本发明公开了鹰嘴豆ECM定位铁蛋白(CaFer1)的鉴定,分离和克隆及其在营养摄取,储存和胁迫耐受性中的多功能作用。 进行鹰嘴豆细胞(ECM)的比较蛋白质组学分析,以鉴定脱水应激信号的新成分。 此外,本发明涉及一种用于产生过表达所述CaFer1基因的环境胁迫耐受转基因植物的方法。 本发明还提供了过表达脱水反应性细胞外基质(ECM)蛋白质铁蛋白(CaFer1)的脱水胁迫耐受转基因植物。

    Extra-Cellular Matrix Localized Ferritin for Iron Uptake, Storage, and Stress Tolerance
    8.
    发明申请
    Extra-Cellular Matrix Localized Ferritin for Iron Uptake, Storage, and Stress Tolerance 有权
    超细胞骨架定位铁蛋白铁吸收,储存和应力容忍

    公开(公告)号:US20100251426A1

    公开(公告)日:2010-09-30

    申请号:US12308141

    申请日:2007-06-08

    CPC分类号: C12N15/8271 C07K14/415

    摘要: The present invention relates to environmental stress responsive protein ferritin (CaFer1) of chickpea. The invention discloses identification, isolation and cloning of ECM-localized ferritin (CaFer1) of chickpea and its multifunctional role in nutrient uptake, storage and stress tolerance. Comparative proteomic analysis of the chickpea extra-cellular (ECM) was performed to identify novel components of dehydration stress signaling. In addition, the present invention relates a method for producing environmental stress tolerant transgenic plants over-expressing the said CaFer1 gene. The present invention further provides dehydration stress tolerant transgenic plants overexpressing dehydration-responsive extra cellular matrix (ECM) protein ferritin (CaFer1).

    摘要翻译: 本发明涉及鹰嘴豆的环境应激反应性蛋白质铁蛋白(CaFer1)。 本发明公开了鹰嘴豆ECM定位铁蛋白(CaFer1)的鉴定,分离和克隆及其在营养摄取,储存和胁迫耐受性中的多功能作用。 进行鹰嘴豆细胞(ECM)的比较蛋白质组学分析,以鉴定脱水应激信号的新成分。 此外,本发明涉及一种用于产生过表达所述CaFer1基因的环境胁迫耐受转基因植物的方法。 本发明还提供了过表达脱水反应性细胞外基质(ECM)蛋白质铁蛋白(CaFer1)的脱水胁迫耐受转基因植物。