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首页> 外文期刊>Molecular Biology Reports >Characterization of a novel wheat NAC transcription factor gene involved in defense response against stripe rust pathogen infection and abiotic stresses
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Characterization of a novel wheat NAC transcription factor gene involved in defense response against stripe rust pathogen infection and abiotic stresses

机译:新型小麦NAC转录因子基因的特征与条锈病病原体感染和非生物胁迫的防御反应有关

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摘要

Proteins encoded by the NAC gene family constitute one of the largest plant-specific transcription factors, which have been identified to play many important roles in both abiotic and biotic stress adaptation, as well as in plant development regulation. In the current paper, a full-length cDNA sequence of a novel wheat NAC gene, designated as TaNAC4, was isolated using in silico cloning and the reverse transcription PCR (RT–PCR) methods. TaNAC4 sharing high homology with rice OsNAC4 gene was predicted to encode a protein of 308 amino acid residues, which contained a plant-specific NAC domain in the N-terminus. Transient expression analysis indicated that the deduced TaNAC4 protein was localized in the nucleus of onion epidemical cells. Yeast one-hybrid assay revealed that the C-terminal region of the TaNAC4 protein had transcriptional activity. The expression of TaNAC4 was largely higher in the wheat seedling roots, than that in leaves and stems. TaNAC4 transcript in wheat leaves was induced by the infection of strip rust pathogen, and also by exogenous applied methyl jasmonate (MeJA), ABA and ethylene. However, salicylic acid (SA) had no obvious effect on TaNAC4 expression. Environmental stimuli, including high salinity, wounding, and low-temperature also induced TaNAC4 expression. These results indicate that this novel TaNAC4 gene functions as a transcriptional activator involved in wheat response to biotic and abiotic stresses.
机译:NAC基因家族编码的蛋白质构成最大的植物特异性转录因子之一,已确定在非生物和生物逆境适应以及植物发育调控中起许多重要作用。在本文中,使用计算机克隆和逆转录PCR(RT-PCR)方法分离了一个新的小麦NAC基因全长序列,命名为TaNAC4。预测与水稻OsNAC4基因具有高度同源性的TaNAC4编码一个308个氨基酸残基的蛋白质,该蛋白质在N端含有一个植物特异性NAC结构域。瞬时表达分析表明,推导的TaNAC4蛋白位于洋葱流行细胞的细胞核中。酵母一杂交测定显示TaNAC4蛋白的C末端区域具有转录活性。 TaNAC4在小麦幼苗根中的表达高于叶和茎中的表达。小麦叶片中的TaNAC4转录物是由条锈病病原体的感染以及外源施加的茉莉酸甲酯(MeJA),ABA和乙烯引起的。然而,水杨酸(SA)对TaNAC4表达没有明显影响。包括高盐度,创伤和低温在内的环境刺激也诱导了TaNAC4表达。这些结果表明,该新的TaNAC4基因充当转录激活因子,参与小麦对生物和非生物胁迫的响应。

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