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    • 5. 发明授权
    • Soybean cultivar S100242
    • 大豆品种S100242
    • US08722988B2
    • 2014-05-13
    • US13559026
    • 2012-07-26
    • Justin T. Mason
    • Justin T. Mason
    • A01H5/00A01H5/10A01H4/00A01H1/00A01H1/06C12N15/82C12N5/04C12N15/05
    • A01H5/10C11B1/00
    • A soybean cultivar designated S100242 is disclosed. The invention relates to the seeds of soybean cultivar S100242, to the plants of soybean cultivar S100242, to the plant parts of soybean cultivar S100242, and to methods for producing progeny of soybean cultivar S100242. The invention also relates to methods for producing a soybean plant containing in its genetic material one or more transgenes and to the transgenic soybean plants and plant parts produced by those methods. The invention also relates to soybean cultivars or breeding cultivars, and plant parts derived from soybean cultivar S100242. The invention also relates to methods for producing other soybean cultivars, lines, or plant parts derived from soybean cultivar S100242, and to the soybean plants, varieties, and their parts derived from use of those methods. The invention further relates to hybrid soybean seeds, plants, and plant parts produced by crossing cultivar S100242 with another soybean cultivar.
    • 公开了一种称为S100242的大豆品种。 本发明涉及大豆品种S100242的种子,大豆品种S100242的植物,大豆品种S100242的植物部位,以及大豆品种S100242的后代的生产方法。 本发明还涉及含有一种或多种转基因的遗传物质的大豆植物的制备方法以及通过这些方法制备的转基因大豆植物和植物部分的方法。 本发明还涉及大豆品种或繁殖品种,以及来源于大豆品种S100242的植物成分。 本发明还涉及从大豆品种S100242得到的其他大豆品种,品系,或植物成分的制造方法,以及从使用这些方法得到的大豆植物,品种及其成分的方法。 本发明还涉及杂交大豆种子,植物和通过品种S100242与另一大豆品种杂交产生的植物部分。
    • 7. 发明授权
    • Or gene and its use in manipulating carotenoid content and composition in plants and other organisms
    • 或基因及其在操作植物和其他生物体中类胡萝卜素含量和组成的用途
    • US08071841B2
    • 2011-12-06
    • US11639064
    • 2006-12-14
    • Li LiJoyce Van Eck
    • Li LiJoyce Van Eck
    • C12N15/05C12N15/29C12N15/82
    • C12N15/8243C07K14/415C12N15/825
    • The cauliflower (Brassica oleracea L. var. botrytis) Or gene is a semi-dominant, single-locus mutation. It induces the accumulation of high levels of beta-carotene in various tissues that are normally devoid of carotenoids, turning them orange. Using a map-based cloning strategy, we identified a single gene representing Or and successfully verified its identity by functional complementation in the wild type cauliflower. The Or gene encodes a plastid membrane protein containing the DnaJ zinc figure domain. A likely gain-of-function mutation from a 4.3-kb retrotransposon insertion in the Or allele confers the orange phenotype in the mutant. Southern blot analysis revealed that Or is a single-copy sequence in the cauliflower genome. High level of expression of the Or gene and the protein was found in very young leaves, curds, and flowers at comparable abundance between wild type and the Or mutant. Or likely functions in regulating the differentiation of some non-photosynthetic plastids into chromoplasts, which provide the deposition “sink” for carotenoid accumulation. Successful demonstration of Or in conferring carotenoid accumulation in potato tubers indicates its potential use to improve the nutritional value in staple crops.
    • 花椰菜(Brassica oleracea L. var。botrytis)或基因是半显性的单基因座突变。 它引起高水平的β-胡萝卜素在各种组织中的积累,通常不含类胡萝卜素,使其变成橙色。 使用基于地图的克隆策略,我们确定了代表Or的单个基因,并通过在野生花椰菜中的功能互补成功地验证了其身份。 Or基因编码含有DnaJ锌图形结构域的质体膜蛋白。 来自Or等位基因中的4.3-kb反转录转座子插入的可能的功能增益赋予突变体中的橙色表型。 Southern印迹分析显示Or是花椰菜基因组中的单拷贝序列。 在野生型和Or突变体之间的相当丰度的非常年轻的叶子,凝乳和花中发现了Or基因和蛋白质的高水平表达。 或者可能发挥调节某些非光合质体分化为色素的作用,为色素沉积提供了沉淀。 在马铃薯块茎中成功示范或提供类胡萝卜素积累表明其可能用于改善主要作物的营养价值。