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首页> 外文期刊>Plant Cell Reports >A novel WRKY transcriptional factor from Thlaspi caerulescens negatively regulates the osmotic stress tolerance of transgenic tobacco
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A novel WRKY transcriptional factor from Thlaspi caerulescens negatively regulates the osmotic stress tolerance of transgenic tobacco

机译:拟南芥中一种新型的WRKY转录因子负调控转基因烟草的渗透胁迫耐性

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A novel member of the WRKY gene family, designated TcWRKY53, was isolated from a cadmium (Cd)-treated Thlaspi caerulescens cDNA library by differential screening. WRKY proteins specifically bind to W-boxes, which are found in the promoters of many genes involved in defense and response to environmental stress. TcWRKY53 contains a 975-bp open reading frame encoding a putative protein of 324 amino acids. Homology searches showed that TcWRKY53 resembles similar WRKY domain-containing proteins from rice, parsley and tobacco, especially AtWRKY53 from Arabidopsis thaliana. Semi-quantitative RT-PCR showed that the expression of TcWRKY53 was strongly induced by various environmental stresses, including an excess of NaCl, drought, cold and the signal molecule salicylic acid (SA). The expression of TcWRKY53 in response to NaCl, drought and cold suggested a possible role of TcWRKY53 in abiotic stress response. However, physiological tests indicated that the expression of TcWRKY53 in tobaccos decreases tolerance to sorbitol during seedling root development. This was consistent with PEG6000 treatment of tobacco seedlings, and together these results indicate a negative modulation of TcWRKY53 in response to osmotic stress. Furthermore, two ethylene responsive factor (ERF) family genes, NtERF5 and NtEREBP-1, were negatively induced in TcWRKY53-overexpressing transgenic plants. In contrast, a LEA family gene, NtLEA5, showed no change, suggesting that TcWRKY53 might regulate the plant osmotic stress response by interacting with an ERF-type transcription factor rather than by regulating function genes directly.
机译:通过差异筛选从镉(Cd)处理的拟南芥(Thlaspi caerulescens)cDNA文库中分离出一种名为TcWRKY53的WRKY基因家族的新成员。 WRKY蛋白与W-box特异结合,W-boxs在与防御和对环境压力的响应有关的许多基因的启动子中发现。 TcWRKY53包含一个975bp的开放阅读框,编码324个氨基酸的推定蛋白。同源性搜索显示,TcWRKY53与大米,欧芹和烟草中的类似WRKY结构域蛋白相似,尤其是拟南芥中的AtWRKY53。半定量RT-PCR显示,TcWRKY53的表达受到多种环境胁迫的强烈诱导,包括过量的NaCl,干旱,寒冷和信号分子水杨酸(SA)。 TcWRKY53响应NaCl,干旱和寒冷的表达表明TcWRKY53在非生物胁迫响应中的可能作用。但是,生理测试表明,烟草中TcWRKY53的表达降低了幼苗根部发育过程中对山梨醇的耐受性。这与用PEG6000处理烟草幼苗是一致的,并且这些结果共同表明TcWRKY53对渗透胁迫的负调控。此外,在过表达TcWRKY53的转基因植物中负诱导了两个乙烯反应因子(ERF)家族基因NtERF5和NtEREBP-1。相反,LEA家族基因NtLEA5没有变化,表明TcWRKY53可能通过与ERF型转录因子相互作用而不是直接调节功能基因来调节植物的渗透胁迫响应。

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