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Isolation and characterization of dominant dwarf mutants, Slr1-d, in rice

机译:水稻显性矮化突变体Slr1-d的分离与鉴定

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摘要

sd1 is known as the ‘green revolution’ gene in rice because its application in rice breeding has dramatically increased rice yield. Since the ‘green revolution,’ sd1 has been extensively used to produce modern semi-dwarf varieties. The extensive use of limited dwarfing sources may, however, cause a bottleneck effect in the genetic background of rice varieties. To circumvent this problem, novel and useful sources of dwarf genes must be identified. In this study, we identified three semi-dominant dwarf mutants. These mutants were categorized as dn-type dwarf mutants according to the elongation pattern of internodes. Gibberellin (GA) response tests showed that the mutants were still responsive to GA, although at a reduced rate. Map-based cloning revealed that the dwarf phenotype in these mutants was caused by gain-of-function mutations in the N-terminal region of SLR1. Degradation of the SLR1 protein in these mutants occurred later than in the wild type. Reduced interaction abilities of the SLR1 protein in these mutants with GID1 were also observed using the yeast two-hybrid system. Crossing experiments indicated that with the use of an appropriate genetic background, the semi-dominant dwarf alleles identified in this study could be used to alleviate the deficiency of dwarfing genes for breeding applications.
机译:sd1被称为水稻的“绿色革命”基因,因为它在水稻育种中的应用大大提高了水稻的产量。自“绿色革命”以来,sd1已被广泛用于生产现代半矮变种。但是,广泛使用有限的矮化来源可能会在水稻品种的遗传背景中造成瓶颈效应。为了避免这个问题,必须确定新的和有用的矮人基因来源。在这项研究中,我们确定了三个半显性矮化突变体。根据节间的延长模式,这些突变体被归类为dn型矮化突变体。赤霉素(GA)响应测试表明,突变体对GA的响应速度虽然有所降低,但仍然有效。基于图的克隆表明,这些突变体中的矮表型是由SLR1 N端区域的功能获得性突变引起的。在这些突变体中,SLR1蛋白的降解要比野生型晚。使用酵母双杂交系统还观察到这些突变体中SLR1蛋白与GID1的相互作用能力降低。杂交实验表明,利用适当的遗传背景,本研究中鉴定的半显性矮等位基因可用于缓解矮化基因在育种中的缺陷。

著录项

  • 来源
    《Molecular Genetics and Genomics》 |2009年第2期|223-231|共9页
  • 作者单位

    Bioscience and Biotechnology Center Nagoya University Furo-cho Chikusa-ku Nagoya 464-8601 Japan;

    Bioscience and Biotechnology Center Nagoya University Furo-cho Chikusa-ku Nagoya 464-8601 Japan;

    Bioscience and Biotechnology Center Nagoya University Furo-cho Chikusa-ku Nagoya 464-8601 Japan;

    Bioscience and Biotechnology Center Nagoya University Furo-cho Chikusa-ku Nagoya 464-8601 Japan;

    Bioscience and Biotechnology Center Nagoya University Furo-cho Chikusa-ku Nagoya 464-8601 Japan;

    Faculty of Agriculture Kyushu University Hakozaki 6-10-1 Higashi-ku Fukuoka 812-8581 Japan;

    Bioscience and Biotechnology Center Nagoya University Furo-cho Chikusa-ku Nagoya 464-8601 Japan;

    Bioscience and Biotechnology Center Nagoya University Furo-cho Chikusa-ku Nagoya 464-8601 Japan;

    Bioscience and Biotechnology Center Nagoya University Furo-cho Chikusa-ku Nagoya 464-8601 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Semi-dominant; Dwarf mutant; DELLA protein; Gibberellin;

    机译:半显性矮化突变体DELLA蛋白赤霉素;

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