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首页> 外文期刊>Molecular biology reports >Identification of early-responsive genes associated with the hypersensitive response to tobacco mosaic virus and characterization of a WRKY-type transcription factor in tobacco plants
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Identification of early-responsive genes associated with the hypersensitive response to tobacco mosaic virus and characterization of a WRKY-type transcription factor in tobacco plants

机译:鉴定与烟草花叶病毒超敏反应有关的早期响应基因并鉴定烟草植物中的WRKY型转录因子

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In order to identify genes that are involved in the defense reaction against pathogen attack, we screened for examples that are regulated during the hypersensitive response (HR) to infection by tobacco mosaic virus (TMV) of tobacco (Nicotiana tabacum cv. Xanthi nc) carrying the N gene, which confers resistance to TMV. Among seven genes initially identified by fluorescent differential display, one clone was further characterized because its transcripts accumulated rapidly and transiently after the onset of HR. Its full-length cDNA of 1346 bp encoded a polypeptide consisting of 258 amino acids. The deduced protein contained a single WRKY domain, a Cys_2His_2 zinc-finger motif and a leucine-zipper motif, showing high similarity to WIZZ, a member of the family of WRKY transcription factors in tobacco. The gene was thus designated TIZZ. A GFP-TIZZ fusion protein was found to localize to the nucleus upon introduction into epidermal cells of onion. Bacterially expressed TIZZ was able to bind to the W-box (TTGAC) element that is recognized by other WRKY proteins, but transactivation assays showed it to be unable to activate reporter gene expression by itself. TIZZ transcripts were induced in TMV-infected nahG transgenic tobacco plants, in which salicylic acid fails to accumulate. Neither exogenously applied salicylic acid nor mechanical wounding induced TIZZ transcript accumulation. These results indicate the presence of salicylic acid-independent pathways for HR signal transduction, in which a novel type of WRKY protein(s) may play a critical role for the activation of defense.
机译:为了鉴定参与针对病原体攻击的防御反应的基因,我们筛选了对携带烟草的烟草花叶病毒(TMV)感染的超敏反应(HR)期间受调控的例子。烟草(Nicotiana tabacum cv。Xanthi nc) N基因,赋予对TMV的抗性。在最初通过荧光差异显示鉴定的七个基因中,一个克隆被进一步表征,因为它的转录本在HR发作后迅速而短暂地积累。它的全长1346 bp cDNA编码一个由258个氨基酸组成的多肽。推导的蛋白质包含一个WRKY结构域,一个Cys_2His_2锌指基序和一个亮氨酸拉链基序,显示出与烟草中WRKY转录因子家族成员WIZZ的高度相似性。因此将该基因命名为TIZZ。当将洋葱引入表皮细胞后,发现GFP-TIZZ融合蛋白定位于细胞核。细菌表达的TIZZ能够结合被其他WRKY蛋白识别的W-box(TTGAC)元件,但是反式激活分析表明它本身无法激活报告基因的表达。在TMV感染的nahG转基因烟草植物中诱导了TIZZ转录本,其中水杨酸无法积累。外源施用水杨酸或机械损伤均未诱导TIZZ转录本积累。这些结果表明存在不依赖水杨酸的HR信号转导途径,其中一种新型的WRKY蛋白可能在激活防御中起关键作用。

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