CRISPR/Cas9-mediated editing of eukaryotic elongation factor 1B gamma (eEF1Bγ) reduces Tobacco etch virus accumulation in Nicotiana benthamiana.

IF 5.3 2区 生物学 Q1 PLANT SCIENCES
Bomi Kang, Jelli Venkatesh, Joung-Ho Lee, Jung-Min Kim, Jin-Kyung Kwon, Byoung-Cheorl Kang
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引用次数: 0

Abstract

Key message: Tobacco etch virus accumulation declined in Nicotiana benthamiana eEF1Bγ gene-edited lines, suggesting that eEF1Bγ may be a host factor for this virus. Viruses use host factors to replicate and move from cell to cell. Therefore, the editing of genes encoding viral host factors that are not essential for plant survival enables the rapid development of plants with durable virus resistance. Eukaryotic initiation factors, such as eIF4E and eIF4G, function as host factors for viral infection, and loss-of-function mutations of these factors lead to virus resistance. Broadening the spectrum of host factor targets would help expand resources for engineering virus resistance. In this study, we tested whether editing the eukaryotic translation elongation factor gene eEF1Bγ would produce virus-resistant plants. Accordingly, we targeted the four eEF1Bγ genes in Nicotiana benthamiana for editing using virus-induced gene editing (VIGE) with Tobacco rattle virus (TRV). Although we attempted to obtain plants edited for all four eEF1Bγ homologs, we failed to identify such plants. Instead, we obtained plants with three of the four homologs knocked out, harboring 1-bp insertion/deletions resulting in premature stop codons. These eEF1Bγ-edited plants did not exhibit resistance to Potato virus X (PVX), Tobacco mosaic virus (TMV), or Tomato bushy stunt virus (TBSV) but showed reduced accumulation of Tobacco etch virus (TEV) compared to wild-type plants. These findings demonstrate the feasibility of conferring resistance in plants through gene editing of eEF1Bγ, underscoring the importance of exploring diverse host factor targets for comprehensive virus resistance.

CRISPR/ cas9介导的真核延伸因子1Bγ (eEF1Bγ)编辑减少烟草侵染病毒在烟叶中的积累。
关键信息:烟草蚀斑病毒在本烟eEF1Bγ基因编辑的品系中积累量下降,表明eEF1Bγ可能是该病毒的宿主因子。病毒利用宿主因子进行复制并在细胞间转移。因此,编辑对植物生存非必需的病毒宿主因子编码基因,可以快速发育出具有持久抗病毒能力的植物。真核起始因子,如eIF4E和eIF4G,作为病毒感染的宿主因子,这些因子的功能丧失突变导致病毒耐药性。扩大宿主因子靶点的范围将有助于扩大工程病毒抗性的资源。在这项研究中,我们测试了编辑真核翻译延伸因子基因eEF1Bγ是否会产生抗病毒植物。因此,我们利用烟草摇铃病毒(Tobacco rattle virus, TRV)的病毒诱导基因编辑(VIGE)技术,对benthamiana中的4个eEF1Bγ基因进行编辑。尽管我们试图获得编辑了所有四种eEF1Bγ同源物的植物,但我们未能识别出这样的植物。相反,我们得到了四个同源物中有三个被敲除的植物,其中包含1 bp的插入/缺失,导致过早停止密码子。这些eef1b γ编辑的植株对马铃薯X病毒(PVX)、烟草花叶病毒(TMV)或番茄丛矮病毒(TBSV)没有抗性,但与野生型植株相比,烟草蚀刻病毒(TEV)的积累减少。这些发现证明了通过基因编辑eEF1Bγ在植物中赋予抗性的可行性,强调了探索多种宿主因子靶点对全面病毒抗性的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Cell Reports
Plant Cell Reports 生物-植物科学
CiteScore
10.80
自引率
1.60%
发文量
135
审稿时长
3.2 months
期刊介绍: Plant Cell Reports publishes original, peer-reviewed articles on new advances in all aspects of plant cell science, plant genetics and molecular biology. Papers selected for publication contribute significant new advances to clearly identified technological problems and/or biological questions. The articles will prove relevant beyond the narrow topic of interest to a readership with broad scientific background. The coverage includes such topics as: - genomics and genetics - metabolism - cell biology - abiotic and biotic stress - phytopathology - gene transfer and expression - molecular pharming - systems biology - nanobiotechnology - genome editing - phenomics and synthetic biology The journal also publishes opinion papers, review and focus articles on the latest developments and new advances in research and technology in plant molecular biology and biotechnology.
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