首页> 外文期刊>Plant Biotechnology Journal >WRKY1 acts as a key component improving resistance against Alternaria solani in wild tomato, Solanum arcanum Peralta
【24h】

WRKY1 acts as a key component improving resistance against Alternaria solani in wild tomato, Solanum arcanum Peralta

机译:WRKY1作为改善野生番茄中的altrania solani的关键组成部分,Solanum Arcanum peralta

获取原文
           

摘要

Early blight (EB), caused by Alternaria solani, is a major threat to global tomato production. In comparison with cultivated tomato (Solanum lycopersicum), a wild relative, S.?arcanum exhibits strong resistance against EB. However, molecular cascades operating during EB resistance in wild or cultivated tomato plants are largely obscure. Here, we provide novel insight into spatio‐temporal molecular events in S.?arcanum against A.?solani. Transcriptome and co‐expression analysis presented 33‐WRKYs as promising candidates of which 12 SaWRKYs displayed differential expression patterns in resistant and susceptible accessions during EB disease progression. Among these, SaWRKY1 exhibited induced expression with significant modulation in xyloglucan endotrans hydrolase 5 (XTH5) and MYB2 expressions that correlated with the disease phenotypes. Electro‐mobility shift assay confirmed physical interaction of recombinant SaWRKY1 to SaXTH5 and SaMYB2 promoters. Comparative WRKY1 promoter analysis between resistant and susceptible plants revealed the presence of crucial motifs for defence mechanism exclusively in resistant accession. Additionally, many defence‐related genes displayed significant expression variations in both the accessions. Further, WRKY1 overexpressing transgenic plants exhibited higher levels of EB resistance while RNAi silencing lines had increased susceptibility to A.?solani with altered expression of XTH5 and MYB2. Overall, these findings demonstrate the positive influence of WRKY1 in improving EB resistance in wild tomato and this could be further utilized as a potential target through genetic engineering to augment protection against A.?solani in crop plants.
机译:由Errertaria Solani引起的早期枯萎(EB)是对全球番茄生产的重大威胁。与栽培的番茄(Solanum Lycopersicum)相比,野生相对,S.?Arcanum对EB的抗性很强。然而,在野生或栽培的番茄植物中的EB抗抗抗EB抗性期间操作的分子级联在很大程度上是模糊的。在这里,我们在对A.?Solani中的S.?Armanum中的时代分子事件提供了新的洞察力。转录组和共表达分析呈现33个WRKYS,作为有前途的候选者,其中12个SAWRKYS在EB疾病进展期间显示出抗性和易感腐蚀性的差异表达模式。其中,Sawrky1表现出诱导的表达,在Xyloglucan中间扫水解酶5(xth5)和与疾病表型相关的MyB2表达中的显着调节。电动迁移率测定证实重组锯串1至SAXTH5和SAMYB2启动子的物理相互作用。抗性和易感植物之间的比较Wrky1启动子分析揭示了专门用于防御机制的关键主题的存在。此外,许多与防御相关基因在载体中显示出显着的表达式变化。此外,过表达转基因植物的Wrky1表现出更高水平的EB抗性,而RNAi沉默线对A.?solani的敏感性增加,具有改变的Xth5和MyB2。总体而言,这些研究结果表明WRKY1在野生番茄中改善EB抗ea抗EB抗性的积极影响,这可以通过基因工程进一步用作潜在的目标,以增加治疗作物植物中的A.?OLANI。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号