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首页> 外文期刊>Physiological and Molecular Plant Pathology >Overexpression of Brassica napus NPR1 enhances resistance to Sclerotinia sclerotiorum in oilseed rape
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Overexpression of Brassica napus NPR1 enhances resistance to Sclerotinia sclerotiorum in oilseed rape

机译:Brassica NPU1的过度表达增强了油菜中的肺炎菌菌菌株的抗性

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Sclerotinia sclerotiorum causes a devastating disease in oilseed rape (Brassica napus ), an important oil crop, resulting in huge economic losses. Studies have shown that Arabidopsis thaliana NONEXPRESSOR OF PATHOGENESIS-RELATED GENES 1(NPR1) , a key regulator of salicylic acid (SA) signaling, plays an important role in plant defense against pathogens. However, little is known about the B. napus (Bna ) NPR1 gene and its role in defense to S. sclerotiorum . In this study, we cloned a new NPR1 homolog (BnaNPR1) from B. napus . The new cloned BnaNPR1 exhibits 68.35% identity with AtNPR1 in protein level, and its expression is strongly activated by the SA treatment that, in turn, can enhance resistance to S. sclerotiorum . Further, transgenic Nicotiana benthamiana and B. napus overexpressing BnaNPR1 showed significantly enhanced resistance to S. sclerotiorum . Further experiments showed that after S. sclerotiorum infection, transgenic plants activated the expression of genes associated with SA defense response but suppressed genes associated with JA signaling. These results indicated that BnaNPR1 plays a positive role in resistance of B. napus against S. sclerotiorum , which provides molecular evidence about the positive role of SA signaling in this resistance. Interestingly, it was revealed that the induced expression of BnaNPR1 is suppressed during the S. sclerotiorum infection. Thus, we propose that the strategies for utilization of BnaNPR1 to improve resistance to S. sclerotiorum will be overexpression.
机译:Sclerotinia sclerotiorum导致油菜(Brassica Napus)的毁灭性疾病,这是一个重要的石油作物,导致经济损失巨大。研究表明,拟南芥的拟南芥与病因相关基因1(NPR1),水杨酸(SA)信号传导的关键调节剂,对植物防药进行了重要作用。然而,关于B. Napus(BNA)NPR1基因的众所周知,对S.Sclerotiorum的作用很少。在这项研究中,我们克隆了来自B. Napus的新的NPR1同源物(BNANPR1)。新的克隆BNANPR1在蛋白质水平上表现出68.35%的同一性,其表达被SA治疗强烈激活,又可以增强对S. Sclerotiorum的抗性。此外,转基因尼古罗氏植物嗜酸性嗜酸盐症和B. Napus过表达BNAnpr1表现出显着增强的S.Sclerotiorum的抗性显着增强。进一步的实验表明,在S.Sclerotiorum感染后,转基因植物活化了与SA防御响应相关的基因的表达,但抑制了与JA信号传导相关的基因。这些结果表明,BNANPR1在抗核苷酸的抗性的抗性中发挥阳性作用,这提供了关于SA信号在这种阻力中的积极作用的分子证据。有趣的是,据揭示了在S.Sclerotiorum感染期间抑制了BNAnpr1的诱导表达。因此,我们建议利用BNANPR1改善对S.Sclerotiorum的抗性将过度表达。

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