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鉴定一种新的生物学途径,该途径有助于 对 TMV 的耐受。

Identification of a Novel and Biological Pathways That Contribute to Tolerance of TMV in .

机构信息

College of Tobacco Science, Henan Agricultural University, Zhengzhou, China.

College of Life Sciences, Henan Agricultural University, Zhengzhou, China.

出版信息

Mol Plant Microbe Interact. 2020 Jul;33(7):996-1006. doi: 10.1094/MPMI-12-19-0343-R. Epub 2020 May 20.

Abstract

Tobacco mosaic virus (TMV) infection can causes serious damage to tobacco crops. To explore the approach of preventing TMV infection of plants, two tobacco cultivars with different resistances to TMV were used to analyze transcription profiling before and after TMV infection. The involvement of biological pathways differed between the tolerant variety (Yuyan8) and the susceptible variety (NC89). In particular, the plant-virus interaction pathway was rapidly activated in Yuyan8, and specific resistance genes were enriched. Liquid chromatography tandem mass spectrometry analysis detected large quantities of antiviral substances in the tolerant Yuyan8. A novel () gene was identified as being methylated and this was verified using bisulfite sequencing. Transient expression of in transgenic plants confirmed that was important for susceptibility to TMV. The specific protein interaction map generated from our study revealed that levels of BIP1, E3 ubiquitin ligase, and LRR-RLK were significantly elevated, and all were represented at node positions in the protein interaction map. The same expression tendency of these proteins was also found in transgenic plants at 24 h after TMV inoculation. These data suggested that specific genes in the infection process can activate the immune signal cascade through different resistance genes, and the integration of signal pathways could produce resistance to the virus. These results contribute to the overall understanding of the molecular basis of plant resistance to TMV and in the long term could identify new strategies for prevention and control virus infection.

摘要

烟草花叶病毒(TMV)感染会对烟草作物造成严重损害。为了探索预防 TMV 感染植物的方法,我们使用了对 TMV 具有不同抗性的两个烟草品种,分析了感染前后的转录谱。在耐受品种(豫烟 8 号)和敏感品种(NC89)中,参与的生物途径不同。特别是在豫烟 8 号中,植物-病毒相互作用途径迅速被激活,富集了特定的抗性基因。液质联用分析检测到大量抗病毒物质在耐受品种豫烟 8 号中。鉴定到一个新的()基因发生了甲基化,通过亚硫酸氢盐测序验证了这一点。在转基因植物中瞬时表达发现,对于 TMV 的敏感性,是非常重要的。从我们的研究中生成的特定蛋白质相互作用图谱表明,BIP1、E3 泛素连接酶和 LRR-RLK 的水平显著升高,并且在蛋白质相互作用图谱的节点位置都有代表。在 TMV 接种后 24 小时,转基因植物中也发现了这些蛋白质的相同表达趋势。这些数据表明,在感染过程中的特定基因可以通过不同的抗性基因激活免疫信号级联,而信号通路的整合可以产生对病毒的抗性。这些结果有助于全面理解植物对 TMV 抗性的分子基础,并从长远来看,可以确定预防和控制病毒感染的新策略。

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