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首页> 外文期刊>Plant and Cell Physiology >Decreased l-Ascorbate Content Mediating Bolting is Mainly Regulated by the Galacturonate Pathway in Oncidium
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Decreased l-Ascorbate Content Mediating Bolting is Mainly Regulated by the Galacturonate Pathway in Oncidium

机译:降低的抗坏血酸含量介导的锚固主要受文心半乳糖醛酸途径的调节。

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摘要

We investigated the alteration in l-ascorbate (AsA, reduced form) content and the expression pattern of its related genes during the phase transition in Oncidium orchid. During the vegetative growth, a high H2O2 level was associated with a high content of the reduced form of AsA. During the bolting period, the AsA content and H2O2 level were greatly reduced in parallel with increased expression of OgLEAFY, the gene encoding a key transcription factor integrating different flowering-inducing pathways. This observation suggests that reduced AsA content, due to it having been consumed in scavenging H2O2, is a prerequisite for mediating the phase transition in Oncidium. A survey of the AsA biosynthetic pathway revealed that the gene expression and enzymatic activities of the products of relevant genes of the galacturonate (GalUA) pathway, such as polygalacturonase (OgPG), pectin methylesterase (OgPME) and galacturonate reductase (OgGalUAR), were markedly decreased during the bolting period, as compared with during the vegetative stage. However, the genes whose products were involved in the Smirnoff–Wheeler pathway retained a similar expression level in the two growth stages. The data suggested that OgPME of the GalUA pathway was the pivotal gene in regulating AsA biosynthesis during the bolting period. Further elucidation by overexpressing OgPME in Arabidopsis demonstrated a considerable increase in AsA content, as well as a resulting delayed-flowering phenotype. Our results strongly imply that the reduced level of AsA, regulating bolting for phase transition, resulting in part from its consumption by scavenging H2O2, was mainly caused by the down-regulation of the GalUA pathway, not the Smirnoff–Wheeler pathway.
机译:我们调查了文心兰兰花在相变过程中l-抗坏血酸(AsA,还原形式)含量的变化及其相关基因的表达模式。在营养生长过程中,高H 2 O 2 水平与高含量的AsA还原形式有关。在抽ing期间,AsA含量和H 2 O 2 的水平与OgLEAFY的表达增加并行地大大降低,OgLEAFY是编码整合了不同开花水平的关键转录因子的基因。诱导途径。该观察结果表明,降低AsA含量是介导文心兰中相变的先决条件,因为它已经被清除H 2 O 2 所消耗。对AsA生物合成途径的一项调查显示,半乳糖醛酸(GalUA)途径相关基因的产物的基因表达和酶促活性显着,如聚半乳糖醛酸酶(OgPG),果胶甲基酯酶(OgPME)和半乳糖醛酸还原酶(OgGalUAR)。与营养期相比,抽ing期减少。但是,其产物参与了Smirnoff-Wheeler途径的基因在两个生长阶段都保持了相似的表达水平。数据表明,GalUA途径的OgPME是在抽ing期间调节AsA生物合成的关键基因。通过在拟南芥中过表达OgPME进一步阐明了AsA含量的显着增加,以及由此产生的延迟开花表型。我们的结果强烈暗示,AsA含量的降低(调节相变的螺栓连接),部分是由于清除H 2 O 2 而消耗的,其主要原因是下降-调节GalUA途径,而不是Smirnoff-Wheeler途径。

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