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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >GhWRKY39, a member of the WRKY transcription factor family in cotton, has a positive role in disease resistance and salt stress tolerance
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GhWRKY39, a member of the WRKY transcription factor family in cotton, has a positive role in disease resistance and salt stress tolerance

机译:GhWRKY39是棉花WRKY转录因子家族的成员,在抗病性和耐盐胁迫性方面具有积极作用

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摘要

WRKY transcription factors have been suggested to play crucial roles in the response to biotic and abiotic stresses. However, previous studies concerning WRKYs have primarily focused on model plants, and fairly limited research has been performed with cotton. In the present study, we functionally characterized a stress-responsive IId WRKY gene (GhWRKY39) from cotton. GhWRKY39 is present as a single copy gene, and subcellular localization analysis indicated that GhWRKY39 localizes to the nucleus. Additionally, some cis-acting elements associated with the environmental stress response were observed in the promoter region of this gene. Consistently, a beta-glucuronidase activity assay and quantitative PCR analysis revealed that GhWRKY39 expression could be induced by bacterial and fungal infection or NaCl treatment. Furthermore, the constitutive overexpression of GhWRKY39 in Nicotiana benthamiana conferred greater resistance to bacterial and fungal pathogen infections, and the expression of several pathogenesis-related (PR) genes was significantly increased. The transgenic plants also exhibited less H2O2 accumulation than wild-type plants following pathogen infection. Moreover, GhWRKY39-overexpressing plants displayed enhanced tolerance to salt and oxidative stress and increased transcription of antioxidant enzyme genes, including ascorbate peroxidase (APX), catalase (CAT), glutathione-S-transferase (GST) and superoxide dismutase (SOD). Importantly, overexpression of GhWRKY39 improved the activities of the antioxidant enzymes SOD, POD and CAT after pathogen infection and salt stress treatment. Overall, our data suggest that the overexpression of GhWRKY39 may positively regulate the plant response against pathogen infection and salt stress, likely through the regulation of the reactive oxygen species system via multiple signaling pathway
机译:已经提出WRKY转录因子在对生物和非生物胁迫的应答中起关键作用。但是,以前有关WRKY的研究主要集中在模型植物上,而对棉花的研究却相当有限。在本研究中,我们在功能上表征了棉花的胁迫响应性IId WRKY基因(GhWRKY39)。 GhWRKY39以单拷贝基因形式存在,并且亚细胞定位分析表明GhWRKY39定位于细胞核。另外,在该基因的启动子区域中观察到一些与环境胁迫反应有关的顺式作用元件。一致地,β-葡糖醛酸糖苷酶活性测定法和定量PCR分析显示,GhWRKY39表达可以由细菌和真菌感染或NaCl处理诱导。此外,本氏烟草中GhWRKY39的组成型过表达赋予了对细菌和真菌病原体感染的更大抵抗力,并且几种致病相关(PR)基因的表达显着增加。在病原体感染后,转基因植物还比野生型植物表现出更少的H2O2积累。此外,过表达GhWRKY39的植物对盐和氧化胁迫的耐受性增强,抗氧化剂酶基因的转录增强,包括抗坏血酸过氧化物酶(APX),过氧化氢酶(CAT),谷胱甘肽S-转移酶(GST)和超氧化物歧化酶(SOD)。重要的是,在病原体感染和盐胁迫处理后,GhWRKY39的过表达提高了抗氧化酶SOD,POD和CAT的活性。总体而言,我们的数据表明,GhWRKY39的过表达可能通过多种信号途径调节活性氧系统,从而积极调节植物抵抗病原体感染和盐胁迫的反应。

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