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首页> 外文期刊>Plant biology >Overexpression of the Brassica rapa transcription factor WRKY12 results in reduced soft rot symptoms caused by Pectobacterium carotovorum in Arabidopsis and Chinese cabbage
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Overexpression of the Brassica rapa transcription factor WRKY12 results in reduced soft rot symptoms caused by Pectobacterium carotovorum in Arabidopsis and Chinese cabbage

机译:甘蓝型油菜转录因子WRKY12的过表达导致拟南芥和大白菜中的胡萝卜腐菌引起的软腐病症状减轻

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摘要

Chinese cabbage (Brassica rapa L. ssp. pekinensis), an important vegetable crop, can succumb to diseases such as bacterial soft rot, resulting in significant loss of crop productivity and quality. Pectobacterium carotovorum ssp. carotovorum (Pcc) causes soft rot disease in various plants, including Chinese cabbage. To overcome crop loss caused by bacterial soft rot, a gene from Chinese cabbage was isolated and characterised in this study. We isolated the BrWRKY12 gene from Chinese cabbage, which is a group II member of the WRKY transcription factor superfamily. The 645-bp coding sequence of BrWRKY12 translates to a protein with a molecular mass of approximately 24.4 kDa, and BrWRKY12 was exclusively localised in the nucleus. Transcripts of BrWRKY12 were induced by Pcc infection in Brassica. Heterologous expression of BrWRKY12 resulted in reduced susceptibility to Pcc but not to Pseudomonas syringae pv. tomato in Arabidopsis. Defence-associated genes, such as AtPDF1.2 and AtPGIP2, were constitutively expressed in transgenic lines overexpressing BrWRKY12. The expression of AtWKRY12, which is the closest orthologue of BrWRKY12, was downregulated by Pcc in Arabidopsis. However, the Atwrky12-2 mutants did not show any difference in response to Pcc, pointing to a difference in function of WRKY12 in Brassica and Arabidopsis. Furthermore, BrWRKY12 in Chinese cabbage also exhibited enhanced resistance to bacterial soft rot and increased the expression of defence-associated genes. In summary, BrWRKY12 confers enhanced resistance to Pcc through transcriptional activation of defence-related genes.
机译:大白菜(Brassica rapa L. ssp。pekinensis)是一种重要的蔬菜作物,会死于细菌性软腐病等疾病,导致作物生产力和质量大幅下降。胡萝卜软腐菌胡萝卜素(Pcc)在包括大白菜在内的各种植物中引起软腐病。为了克服由细菌软腐引起的农作物损失,本研究从大白菜中分离了一个基因并进行了表征。我们从大白菜中分离了BrWRKY12基因,大白菜是WRKY转录因子超家族的II类成员。 BrWRKY12的645-bp编码序列翻译成分子量约为24.4 kDa的蛋白质,并且BrWRKY12仅位于细胞核中。在甘蓝型油菜中,Pcc感染诱导了BrWRKY12的转录本。 BrWRKY12的异源表达导致对Pcc的敏感性降低,而对丁香假单胞菌pv的敏感性降低。拟南芥中的番茄。与防御相关的基因,例如AtPDF1.2和AtPGIP2,在过表达BrWRKY12的转基因株系中组成性表达。拟南芥中的Pcc下调了BrWRKY12的最接近直系同源基因AtWKRY12的表达。但是,Atwrky12-2突变体对Pcc的反应没有显示任何差异,表明在芸苔属和拟南芥属中WRKY12的功能存在差异。此外,大白菜中的BrWRKY12还表现出增强的对细菌软腐病的抵抗力,并增加了防御相关基因的表达。总之,BrWRKY12通过防御相关基因的转录激活而增强了对Pcc的抗性。

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