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转录组分析两种烟草品种对黄瓜花叶病毒感染的响应。

Transcriptome analysis of two cultivars of tobacco in response to Cucumber mosaic virus infection.

机构信息

Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao, 266101, China.

出版信息

Sci Rep. 2019 Feb 28;9(1):3124. doi: 10.1038/s41598-019-39734-w.

Abstract

Cucumber mosaic virus (CMV) is among the most important plant virus infections, inducing a variety of disease symptoms. However, the molecular mechanisms underlying plant responses to CMV infection remain poorly understood. In this study, we performed RNA sequencing analysis of tolerant (Taiyan8) and susceptible (NC82) tobacco cultivars on CMV-infected plants, using mock-inoculated plants as a control. The propagation of CMV in inoculated leaves did not show obvious difference between two cultivars, whereas virus accumulation in systemic leaves of Taiyan8 was smaller than those of NC82 at the same time point. We observed 765 and 1,011 differentially expressed genes (DEGs) in Taiyan8 and NC82, respectively, in CMV-inoculated leaves. DEGs related to reactive oxygen species, salicylic acid signal transduction, and plant-pathogen interaction were upregulated or downregulated in Taiyan8, which indicates that defense response pathways to CMV were activated in the tolerant cultivar. In addition, we identified several DEGs related to disease defense and stress resistance showing opposing expression patterns in the two cultivars. Our comparative transcriptome analysis will improve our understanding of the mechanisms of CMV tolerance in plants, and will be of great importance in the molecular breeding of CMV- tolerant genotypes.

摘要

黄瓜花叶病毒(CMV)是最重要的植物病毒感染之一,可引起多种疾病症状。然而,植物对 CMV 感染的反应的分子机制仍知之甚少。在这项研究中,我们对 CMV 感染的耐病(台烟 8 号)和感病(NC82)烟草品种进行了 RNA 测序分析,以未接种的植株作为对照。接种叶片中 CMV 的繁殖在两个品种之间没有明显差异,而在同一时间点,台烟 8 号系统叶片中的病毒积累量小于 NC82。我们在 CMV 接种叶片中分别观察到 765 和 1011 个差异表达基因(DEGs)在耐病品种和感病品种中。与活性氧、水杨酸信号转导和植物-病原体相互作用相关的 DEGs 在台烟 8 号中被上调或下调,这表明防御反应途径在耐病品种中被激活。此外,我们还鉴定了几个与疾病防御和应激抗性相关的 DEGs,它们在两个品种中的表达模式相反。我们的比较转录组分析将提高我们对植物对 CMV 耐受性的机制的理解,对 CMV 耐病基因型的分子育种具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c8c/6395745/e4fe054efa3d/41598_2019_39734_Fig1_HTML.jpg

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