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A novel dwarfing mutation in a 'Green Revolution' gene in Brassica rapa: Its role in the gibberellin pathway and its potential use in agriculture.

机译:甘蓝型油菜“绿色革命”基因中的新矮化突变:其在赤霉素途径中的作用及其在农业中的潜在用途。

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摘要

Lodging is a serious problem in oilseed Brassica napus. In wheat and rice, dwarf genes have been used to reduce lodging, and their use was a major factor in the success of the 'Green Revolution'. A dwarf gene, dwf2, from B. rapa was characterized as a gibberellin insensitive, semi-dominant allele at a single locus, and it significantly reduced plant height in field experiments. Comparative mapping analysis suggested that a homolog of Arabidopsis RGA ( repressor of gal-3), encoding a DELLA protein, which is a homolog of the wheat 'Green Revolution' gene, was a candidate for the mutant gene. DWF2 was cloned and renamed BrRGA1. dwf2 (Brrga1-d) mutant contains one base pair substitution changing an absolutely conserved amino acid in the C-terminus of BrRGA1. This mutation results in high levels of accumulation of Brrga1-d protein, which is resistant to degradation by gibberellin. Transgenic Arabidopsis plants expressing AtRGA with an identical mutation as in Brrga1-d, Atrga-d , are dwarfs with high levels of accumulation of GA-resistant Atrga-d protein, indicating that the effect of the mutation is conserved in other species. Results from yeast two hybrid assays suggested that the dwarf phenotypes caused by high levels of accumulation of the mutant protein is due to the inability of the mutant proteins to interact with SLY1, a component needed for the degradation process. The Brrga1-d allele transferred to B. napus, using interspecific hybridization and embryo rescue, significantly reduced plant height and lodging of B. napus inbred and hybrid lines. A 'perfect' PCR marker based on detecting the nucleotide mutation causing the dwarf phenotype was developed for selecting the Brrga1-d gene in B. napus and B. rapa breeding programs.
机译:在油菜甘蓝型油菜中,倒伏是一个严重的问题。在小麦和水稻中,矮基因已被用来减少倒伏,它们的使用是“绿色革命”成功的主要因素。来自B. rapa的矮基因dwf2在单个基因座处被表征为赤霉素不敏感的半显性等位基因,并且在田间实验中显着降低了株高。比较作图分析表明,编码DELLA蛋白的拟南芥RGA(gal-3的阻遏物)的同源物是小麦“绿色革命”基因的同源物,是突变基因的候选者。 DWF2被克隆并重命名为BrRGA1。 dwf2(Brrga1-d)突变体包含一个碱基对取代,从而改变BrRGA1 C端的绝对保守氨基酸。这种突变导致高水平的Brrga1-d蛋白积累,这种蛋白可抵抗赤霉素的降解。表达具有与Brrga1-d,Atrga-d中相同的突变的AtRGA的转基因拟南芥植物是具有高水平耐GA抗性Atrga-d蛋白积累的矮人,这表明该突变的影响在其他物种中是保守的。酵母菌两种杂交测定的结果表明,由突变蛋白的高水平积累引起的矮表型是由于突变蛋白无法与SLY1相互作用而产生的,SLY1是降解过程所需的组分。通过种间杂交和胚拯救,将Brrga1-d等位基因转移至甘蓝型油菜,显着降低了甘蓝型油菜自交系和杂种系的株高和倒伏。开发了一种基于“检测”导致矮表型的核苷酸突变的“完美” PCR标记,用于在油菜和油菜育种程序中选择Brrga1-d基因。

著录项

  • 作者

    Muangprom, Amorntip.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Biology Genetics.;Biology Cell.;Agriculture Agronomy.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 87 p.
  • 总页数 87
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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