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首页> 外文期刊>Scientific reports. >Gibberellin-Regulation and Genetic Variations in Leaf Elongation for Tall Fescue in Association with Differential Gene Expression Controlling Cell Expansion
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Gibberellin-Regulation and Genetic Variations in Leaf Elongation for Tall Fescue in Association with Differential Gene Expression Controlling Cell Expansion

机译:赤霉素对高羊茅叶片伸长的调控和遗传变异与基因表达调控细胞扩增的关系

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Leaf elongation rate (LER) is an important factor controlling plant growth and productivity. The objective of this study was to determine whether genetic variation in LER for a fast-growing ('K-31'), and a dwarf cultivar ('Bonsai') of tall fescue (Festuca arundinacea) and gibberellic acid (GA) regulation of LER were associated with differential expression of cell-expansion genes. Plants were treated with GA3, trinexapac-ethyl (TE) (GA inhibitor), or water (untreated control) in a hydroponic system. LER of 'K-31' was 63% greater than that of 'Bonsai', which corresponded with 32% higher endogenous GA4 content in leaf and greater cell elongation and production rates under the untreated control condition. Exogenous application of GA3 significantly enhanced LER while TE treatment inhibited leaf elongation due to GA3-stimulation or TE-inhibition of cell elongation and production rate in leaves for both cultivars. Real-time quantitative polymerase chain reaction analysis revealed that three α-expansins, one β-expansin, and three xyloglucan endotransglycosylase (XET) genes were associated with GA-stimulation of leaf elongation, of which, the differential expression of EXPA4 and EXPA7 was related to the genotypic variation in LER of two cultivars. Those differentially-expressed expansin and XET genes could play major roles in genetic variation and GA-regulated leaf elongation in tall fescue.
机译:叶片伸长率(LER)是控制植物生长和生产力的重要因素。这项研究的目的是确定高羊茅(Festuca arundinacea)和赤霉素(GA)的快速生长('K-31')和矮生品种('Bonsai')的LER遗传变异是否LER与细胞扩增基因的差异表达有关。在水培系统中,用GA3,抗倒酯(TE)(GA抑制剂)或水(未处理的对照)处理植物。 “ K-31”的LER比“盆景”的LER高63%,这对应于未经处理的对照条件下叶片中内源GA4含量高32%,细胞伸长率和生产率更高。外源施用GA3显着增强了LER,而TE处理抑制了GA-3刺激或TE抑制了两个品种叶片的细胞伸长和生产率,从而导致叶片伸长。实时定量聚合酶链反应分析表明,三个α-扩展酶,一个β-扩展酶和三个木葡聚糖内转糖基化酶(XET)基因与GA刺激叶片伸长相关,其中,EXPA4和EXPA7的差异表达相关两个品种的LER基因型差异这些差异表达的expanin和XET基因可能在高羊茅的遗传变异和GA调控的叶片伸长中起主要作用。

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