首页> 美国卫生研究院文献>Journal of Experimental Botany >Differential coupling of gibberellin responses by Rht-B1c suppressor alleles and Rht-B1b in wheat highlights a unique role for the DELLA N-terminus in dormancy
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Differential coupling of gibberellin responses by Rht-B1c suppressor alleles and Rht-B1b in wheat highlights a unique role for the DELLA N-terminus in dormancy

机译:Rht-B1c抑制等位基因和Rht-B1b在小麦中赤霉素反应的差异偶联突出了DELLA N末端在休眠中的独特作用

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摘要

During the Green Revolution, substantial increases in wheat (Triticum aestivum) yields were realized, at least in part, through the introduction of the Reduced height (Rht)-B1b and Rht-D1b semi-dwarfing alleles. In contrast to Rht-B1b and Rht-D1b, the Rht-B1c allele is characterized by extreme dwarfism and exceptionally strong dormancy. Recently, 35 intragenic Rht-B1c suppressor alleles were created in the spring wheat cultivar Maringá, and termed overgrowth (ovg) alleles. Here, 14 ovg alleles with agronomically relevant plant heights were reproducibly classified into nine tall and five semi-dwarf alleles. These alleles differentially affected grain dormancy, internode elongation rate, and coleoptile and leaf lengths. The stability of these ovg effects was demonstrated for three ovg alleles in different genetic backgrounds and environments. Importantly, two semi-dwarf ovg alleles increased dormancy, which correlated with improved pre-harvest sprouting (PHS) resistance. Since no negative effects on grain yield or quality were observed, these semi-dwarf ovg alleles are valuable for breeding to achieve adequate height reduction and protection of grain quality in regions prone to PHS. Furthermore, this research highlights a unique role for the first 70 amino acids of the DELLA protein, encoded by the Rht-1 genes, in grain dormancy.
机译:在绿色革命期间,至少部分地通过引入减高(Rht)-B1b和Rht-D1b半矮等位基因实现了小麦(Triticum aestivum)单产的大幅提高。与Rht-B1b和Rht-D1b相比,Rht-B1c等位基因的特征是极端侏儒症和异常强的休眠状态。最近,在春季小麦品种Maringá中创建了35个基因内的Rht-B1c抑制等位基因,称为过生长(ovg)等位基因。在这里,具有农业相关植物高度的14个卵等位基因可重复地分为9个高等位基因和5个半矮等位基因。这些等位基因差异地影响谷物休眠,节间伸长率以及胚芽鞘和叶的长度。在不同遗传背景和环境中的三个卵等位基因证明了这些卵效应的稳定性。重要的是,两个半矮卵卵等位基因增加了休眠,这与改善的收获前发芽(PHS)抗性相关。由于未观察到对谷物产量或品质的负面影响,因此这些半矮小的卵形等位基因对于育种具有重要价值,可在高度易生PHS的地区实现足够的高度降低并保护谷物品质。此外,这项研究突出了由Rht-1基因编码的DELLA蛋白的前70个氨基酸在谷粒休眠中的独特作用。

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