BACKGROUND:Heterosis in internode elongation and plant height are commonly observed in hybrid plants, and higher GAs contents were found to be correlated with the heterosis in plant height. However, the molecular basis for the increased internode elongation in hybrids is unknown. RESULTS:In this study, heterosis in plant height was determined in two wheat hybrids, and it was found that the increased elongation of the uppermost internode contributed mostly to the heterosis in plant height. Higher GA4 level was also observed in a wheat hybrid. By using the uppermost internode tissues of wheat, we examined expression patterns of genes participating in both GA biosynthesis and GA response pathways between a hybrid and its parental inbreds. Our results indicated that among the 18 genes analyzed, genes encoding enzymes that promote synthesis of bioactive GAs, and genes that act as positive components in the GA response pathways were up-regulated in hybrid, whereas genes encoding enzymes that deactivate bioactive GAs, and genes that act as negative components of GA response pathways were down-regulated in hybrid. Moreover, the putative wheat GA receptor gene TaGID1, and two GA responsive genes participating in internode elongation, GIP and XET, were also up-regulated in hybrid. A model for GA and heterosis in wheat plant height was proposed. CONCLUSION:Our results provided molecular evidences not only for the higher GA levels and more active GA biosynthesis in hybrid, but also for the heterosis in plant height of wheat and possibly other cereal crops.

译文

背景:杂种植物通常观察到节间伸长和株高的杂种优势,并且较高的GA含量与株高的杂种优势相关。但是,尚不清楚杂种中节间伸长增加的分子基础。
结果:本研究确定了两个小麦杂种的株高杂种优势,发现最上节间的伸长率增加主要是造成株高杂种优势的原因。在小麦杂种中也观察到较高的GA4水平。通过使用小麦的最上节间组织,我们检查了参与杂种及其亲本近交种之间GA生物合成和GA响应途径的基因的表达模式。我们的结果表明,在所分析的18个基因中,编码促进生物活性GA合成的酶的基因和在GA反应途径中充当正向成分的基因在杂种中上调,而编码使生物活性GA失活的酶的基因和基因杂种中GA反应途径的负性成分被下调。此外,杂种小麦中的假定小麦GA受体基因TaGID1和两个参与节间延长的GA响应基因GIP和XET也被上调。提出了遗传算法和小麦株高杂种优势模型。
结论:我们的结果不仅为杂种中较高的GA水平和更活跃的GA生物合成提供了分子证据,还为小麦和可能的其他谷物作物的株高杂种优势提供了分子证据。

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