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首页> 外文期刊>Plant and Cell Physiology >Gibberellin Homeostasis in Tobacco is Regulated by Gibberellin Metabolism Genes with Different Gibberellin Sensitivity
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Gibberellin Homeostasis in Tobacco is Regulated by Gibberellin Metabolism Genes with Different Gibberellin Sensitivity

机译:烟草中的赤霉素稳态由具有不同赤霉素敏感性的赤霉素代谢基因调控

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Gibberellins are phytohormones that regulate growth and development of plants. Gibberellin homeostasis is maintained by feedback regulation of gibberellin metabolism genes. To understand this regulation, we manipulated the gibberellin pathway in tobacco and studied its effects on the morphological phenotype, gibberellin levels and the expression of endogenous gibberellin metabolism genes. The overexpression of a gibberellin 3-oxidase (biosynthesis gene) in tobacco (3ox-OE) induced slight variations in phenotype and active GA1 levels, but we also found an increase in GA8 levels (GA1 inactivation product) and a conspicuous induction of gibberellin 2-oxidases (catabolism genes; NtGA2ox3 and -5), suggesting an important role for these particular genes in the control of gibberellin homeostasis. The effect of simultaneous overexpression of two biosynthesis genes, a gibberellin 3-oxidase and a gibberellin 20-oxidase (20ox/3ox-OE), on phenotype and gibberellin content suggests that gibberellin 3-oxidases are non-limiting enzymes in tobacco, even in a 20ox-OE background. Moreover, the expression analysis of gibberellin metabolism genes in transgenic plants (3ox-OE, 20ox-OE and hybrid 3ox/20ox-OE), and in response to application of different GA1 concentrations, showed genes with different gibberellin sensitivity. Gibberellin biosynthesis genes (NtGA20ox1 and NtGA3ox1) are negatively feedback regulated mainly by high gibberellin levels. In contrast, gibberellin catabolism genes which are subject to positive feedback regulation are sensitive to high (NtGA2ox1) or to low (NtGA2ox3 and -5) gibberellin concentrations. These two last GA2ox genes seem to play a predominant role in gibberellin homeostasis under mild gibberellin variations, but not under large gibberellin changes, where the biosynthesis genes GA20ox and GA3ox may be more important.
机译:赤霉素是调节植物生长发育的植物激素。赤霉素体内稳态通过赤霉素代谢基因的反馈调节来维持。为了了解这种调节,我们操纵了烟草中的赤霉素途径,并研究了其对形态表型,赤霉素水平和内源赤霉素代谢基因表达的影响。烟草(3ox-OE)中赤霉素3-氧化酶(生物合成基因)的过表达引起表型和活性GA 1 水平的微小变化,但我们还发现GA 8 < / sub>水平(GA 1 灭活产物)和明显诱导的赤霉素2-氧化酶(分解代谢基因; NtGA2ox3和-5),表明这些特定基因在控制赤霉素稳态中具有重要作用。 。同时表达两种生物合成基因,即赤霉素3-氧化酶和赤霉素20-氧化酶(20ox / 3ox-OE)对表型和赤霉素含量的影响表明,赤霉素3-氧化酶是烟草中的非限制性酶,即使在烟草中也是如此。 20ox-OE背景。此外,赤霉素代谢基因在转基因植物(3ox-OE,20ox-OE和杂种3ox / 20ox-OE)中的表达分析以及响应于不同GA 1 浓度的应用,显示了具有不同的赤霉素敏感性。赤霉素生物合成基因(NtGA20ox1和NtGA3ox1)主要由高赤霉素水平负调控。相反,受到正反馈调节的赤霉素分解代谢基因对高(NtGA2ox1)或低(NtGA2ox3和-5)赤霉素浓度敏感。在轻度赤霉素变化下,这两个最后的GA2ox基因似乎在赤霉素稳态中起主要作用,但在大赤霉素变化下却不起作用,在那里生物合成基因GA20ox和GA3ox可能更重要。

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