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一种用于李属果树功能基因组学研究的高效病毒载体及其通过沉默宿主因子基因诱导对李痘病毒的抗性。

An efficient viral vector for functional genomic studies of Prunus fruit trees and its induced resistance to Plum pox virus via silencing of a host factor gene.

作者信息

Cui Hongguang, Wang Aiming

机构信息

London Research and Development Centre, Agriculture and Agri-Food Canada (AAFC), London, ON, Canada.

出版信息

Plant Biotechnol J. 2017 Mar;15(3):344-356. doi: 10.1111/pbi.12629. Epub 2016 Sep 29.

DOI:10.1111/pbi.12629
PMID:27565765
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5316922/
Abstract

RNA silencing is a powerful technology for molecular characterization of gene functions in plants. A commonly used approach to the induction of RNA silencing is through genetic transformation. A potent alternative is to use a modified viral vector for virus-induced gene silencing (VIGS) to degrade RNA molecules sharing similar nucleotide sequence. Unfortunately, genomic studies in many allogamous woody perennials such as peach are severely hindered because they have a long juvenile period and are recalcitrant to genetic transformation. Here, we report the development of a viral vector derived from Prunus necrotic ringspot virus (PNRSV), a widespread fruit tree virus that is endemic in all Prunus fruit production countries and regions in the world. We show that the modified PNRSV vector, harbouring the sense-orientated target gene sequence of 100-200 bp in length in genomic RNA3, could efficiently trigger the silencing of a transgene or an endogenous gene in the model plant Nicotiana benthamiana. We further demonstrate that the PNRSV-based vector could be manipulated to silence endogenous genes in peach such as eukaryotic translation initiation factor 4E isoform (eIF(iso)4E), a host factor of many potyviruses including Plum pox virus (PPV). Moreover, the eIF(iso)4E-knocked down peach plants were resistant to PPV. This work opens a potential avenue for the control of virus diseases in perennial trees via viral vector-mediated silencing of host factors, and the PNRSV vector may serve as a powerful molecular tool for functional genomic studies of Prunus fruit trees.

摘要

RNA沉默是用于植物基因功能分子表征的一项强大技术。诱导RNA沉默的常用方法是通过遗传转化。一种有效的替代方法是使用修饰的病毒载体进行病毒诱导的基因沉默(VIGS),以降解具有相似核苷酸序列的RNA分子。不幸的是,许多异花授粉木本多年生植物(如桃树)的基因组研究受到严重阻碍,因为它们的幼年期很长,并且对遗传转化具有抗性。在此,我们报告了一种源自李坏死环斑病毒(PNRSV)的病毒载体的开发,PNRSV是一种广泛传播的果树病毒,在世界上所有李属水果生产国家和地区均有流行。我们表明,修饰后的PNRSV载体在基因组RNA3中携带长度为100 - 200 bp的正义方向靶基因序列,能够有效地触发模式植物本氏烟草中转基因或内源基因的沉默。我们进一步证明,可以操纵基于PNRSV的载体来沉默桃中的内源基因,如真核翻译起始因子4E异构体(eIF(iso)4E),它是包括李痘病毒(PPV)在内的许多马铃薯Y病毒属病毒的宿主因子。此外,eIF(iso)4E基因敲低的桃树植株对PPV具有抗性。这项工作为通过病毒载体介导宿主因子沉默来控制多年生树木的病毒病害开辟了一条潜在途径,并且PNRSV载体可能成为李属果树功能基因组学研究的强大分子工具。

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1
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2
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Plant Physiol. 2016 Jul;171(3):1801-7. doi: 10.1104/pp.16.00010. Epub 2016 May 25.
3
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4
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Front Plant Sci. 2024 Jan 19;14:1321555. doi: 10.3389/fpls.2023.1321555. eCollection 2023.
5
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6
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9
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10
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