Jiangsu Key Laboratory for Pathogens and Ecosystems, Jiangsu Engineering and Technology Research Center for Microbiology, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, China.
Jiangsu Key Laboratory for Food Quality and Safety-State Key Laboratory Cultivation Base of Ministry of Science and Technology, Institute of Plant Protection, Jiangsu Academy of Agricultural Sciences, Nanjing, 210014, China.
Transgenic Res. 2024 Jun;33(3):149-157. doi: 10.1007/s11248-024-00388-8. Epub 2024 Jun 6.
RNA silencing is an innate immune mechanism of plants against invasion by viral pathogens. Artificial microRNA (amiRNA) can be engineered to specifically induce RNA silencing against viruses in transgenic plants and has great potential for disease control. Here, we describe the development and application of amiRNA-based technology to induce resistance to soybean mosaic virus (SMV), a plant virus with a positive-sense single-stranded RNA genome. We have shown that the amiRNA targeting the SMV P1 coding region has the highest antiviral activity than those targeting other SMV genes in a transient amiRNA expression assay. We transformed the gene encoding the P1-targeting amiRNA and obtained stable transgenic Nicotiana benthamiana lines (amiR-P1-3-1-2-1 and amiR-P1-4-1-2-1). Our results have demonstrated the efficient suppression of SMV infection in the P1-targeting amiRNA transgenic plants in an expression level-dependent manner. In particular, the amiR-P1-3-1-2-1 transgenic plant showed high expression of amiR-P1 and low SMV accumulation after being challenged with SMV. Thus, a transgenic approach utilizing the amiRNA technology appears to be effective in generating resistance to SMV.
RNA 沉默是植物抵御病毒病原体入侵的一种先天免疫机制。人工 microRNA(amiRNA)可以被设计用来特异性诱导转基因植物中的 RNA 沉默,从而对病毒进行靶向抑制,在疾病防控方面具有巨大的应用潜力。在这里,我们描述了基于 amiRNA 的技术的开发和应用,以诱导对大豆花叶病毒(SMV)的抗性,SMV 是一种具有正链单链 RNA 基因组的植物病毒。我们已经表明,在瞬时 amiRNA 表达试验中,靶向 SMV P1 编码区的 amiRNA 比靶向其他 SMV 基因的 amiRNA 具有更高的抗病毒活性。我们还转化了编码靶向 P1 的 amiRNA 的基因,并获得了稳定的转基因烟草(Nicotiana benthamiana)株系(amiR-P1-3-1-2-1 和 amiR-P1-4-1-2-1)。我们的结果表明,在表达水平依赖性方式下,靶向 P1 的 amiRNA 转基因植物中能够有效抑制 SMV 的感染。特别是,在受到 SMV 攻击后,amiR-P1-3-1-2-1 转基因植物表现出高表达 amiR-P1 和低 SMV 积累。因此,利用 amiRNA 技术的转基因方法似乎可以有效产生对 SMV 的抗性。