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NS3 Protein from Rice stripe virus affects the expression of endogenous genes in Nicotiana benthamiana

机译:来自水稻条纹病毒的NS3蛋白质影响内源性基因在尼古利亚纳·宾夕法尼亚州的表达

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摘要

Abstract Background Rice stripe virus (RSV) belongs to the genus Tenuivirus. It is transmitted by small brown planthoppers in a persistent and circulative-propagative manner and causes rice stripe disease (RSD). The NS3 protein of RSV, encoded by the viral strand of RNA3, is a viral suppressor of RNA silencing (VSR). NS3 plays a significant role in viral infection, and NS3-transgenic plants manifest resistance to the virus. Methods The stability and availability of NS3 produced by transgenic Nicotiana benthamiana was investigated by northern blot analysis. The accumulation of virus was detected by western blot analysis. Transcriptome sequencing was used to identify differentially expressed genes (DEGs) in NS3-transgenic N. benthamiana. Results When the host plants were inoculated with RSV, symptoms and viral accumulation in NS3-transgenic N. benthamiana were reduced compared with the wild type. Transcriptome analysis identified 2533 differentially expressed genes (DEGs) in the NS3-transgenic N. benthamiana, including 597 upregulated genes and 1936 downregulated genes. These DEGs were classified into three Gene Ontology (GO) categories and were associated with 43 GO terms. KEGG pathway analysis revealed that these DEGs were involved in pathways associated with ribosomes (ko03010), photosynthesis (ko00195), photosynthesis-antenna proteins (ko00196), and carbon metabolism (ko01200). More than 70 DEGs were in these four pathways. Twelve DEGs were selected for RT-qPCR verification and subsequent analysis. The results showed that NS3 induced host resistance by affecting host gene expression. Conclusion NS3, which plays dual roles in the process of infection, may act as a VSR during RSV infection, and enable viral resistance in transgenic host plants. NS3 from RSV affects the expression of genes associated with ribosomes, photosynthesis, and carbon metabolism in N. benthamiana. This study enhances our understanding of the interactions between VSRs and host plants.
机译:摘要背景水稻条纹病毒(RSV)属于属纤细病毒。它是由一个持久的和可循环繁殖性的方式和原因水稻条纹病(RSD)灰飞虱发送。 RSV的NS3蛋白,由RNA3的病毒编码链,是RNA沉默(VSR)的病毒抑制剂。 NS3起着病毒感染显著的作用,NS3转基因植物病毒清单阻力。方法NS3的稳定性和可用性产生的转基因本氏烟草通过RNA印迹分析研究。病毒的积累是由Western blot检测。转录组测序,使用了NS3转基因本生烟草鉴定差异表达的基因(DEGS)。结果当主机植物在NS3-转基因本生烟草与RSV,症状和病毒积累接种用野生型相比降低。转录组分析鉴定在NS3-转基因本生烟草2533倍差异表达的基因(DEGS),包括597个基因上调和1936下调的基因。这些DEGS被分成三基因本体论(GO)的类别和用43个GO术语相关联。 KEGG途径分析显示,这些DEGS参与与核糖体相关的途径(ko03010),光合作用(ko00195),光合作用天线蛋白(ko00196)和碳代谢(ko01200)。超过70度的视角是在这四个途径。十二DEGS被选择用于RT-qPCR的验证和随后的分析。结果表明,NS3通过影响宿主基因表达诱导的宿主抗性。结论NS3,起着双重作用在感染的过程中,可作为RSV感染期间VSR,并使能在转基因宿主植物病毒抗性。 NS3来自RSV影响与核糖体,光合作用,并在烟草本塞姆氏碳代谢相关的基因的表达。这项研究增强了我们的视觉敏感受体和寄主植物之间的相互作用的理解。

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