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Plant Biotechnol J. 2010 Dec;8(9):1023-32. doi: 10.1111/j.1467-7652.2010.00539.x.
4
The brome mosaic virus-based recombination vector triggers a limited gene silencing response depending on the orientation of the inserted sequence.基于雀麦花叶病毒的重组载体根据插入序列的方向引发有限的基因沉默反应。
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5
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6
A similarity between viral defense and gene silencing in plants.植物中病毒防御与基因沉默之间的相似性。
Science. 1997 Jun 6;276(5318):1558-60. doi: 10.1126/science.276.5318.1558.
7
Stability of Barley stripe mosaic virus-induced gene silencing in barley.大麦条纹花叶病毒诱导的大麦基因沉默的稳定性
Mol Plant Microbe Interact. 2007 Nov;20(11):1323-31. doi: 10.1094/MPMI-20-11-1323.
8
Virus-induced gene silencing of P23k in barley leaf reveals morphological changes involved in secondary wall formation.大麦叶片中P23k的病毒诱导基因沉默揭示了次生壁形成过程中涉及的形态变化。
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9
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Characterization of a Brome mosaic virus strain and its use as a vector for gene silencing in monocotyledonous hosts.一种雀麦花叶病毒株系的特性及其作为单子叶植物宿主中基因沉默载体的应用。
Mol Plant Microbe Interact. 2006 Nov;19(11):1229-39. doi: 10.1094/MPMI-19-1229.

一种新型基于 BSMV 的载体,修饰了 β 分子,可同时且稳定地沉默两个基因。

A new BSMV-based vector with modified β molecule allows simultaneous and stable silencing of two genes.

机构信息

Plant Breeding and Acclimatization Institute, Błonie, Poland.

出版信息

Cell Mol Biol Lett. 2012 Mar;17(1):107-23. doi: 10.2478/s11658-011-0041-9. Epub 2011 Dec 28.

DOI:10.2478/s11658-011-0041-9
PMID:22207334
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6275698/
Abstract

Virus-induced gene silencing is an important tool for functional gene analysis and the vector based on Barley stripe mosaic virus (BSMV) is widely used for the purpose in monocots. Of the tripartite BSMV genome, currently the BSMV:γMCS molecule is used to clone a fragment of a target gene. As an alternative, the BSMV:β molecule was engineered with a unique BamHI site between the open reading frame of βc (ORF βc) and poly(A). The mixture of RNA particles α, βBamHI and γMCS was fully infectious. Barley phytoene desaturase and wheat phospholipase Dα fragments were cloned to βBamHI and γMCS. Delivery of the target gene fragment in γMCS induced stronger silencing, while delivery in βBamHI yielded more stable transcript reduction. A quantitative analysis (qRT-PCR) of the transcripts showed that the silencing induced with a fragment carried in both particles was stronger and more stable than that from a fragment placed in one particle. The modification of β enables simultaneous silencing of two genes. Quantifying the β and γ particles in virus-inoculated plants revealed a 2.5-fold higher level of γ than β, while the stability of the insert was higher in β compared with γ. The possible influence of the relative quantity of β and γ particles in virus-inoculated plants on insert stability and gene silencing efficiency is discussed.

摘要

病毒诱导的基因沉默是功能基因分析的重要工具,基于大麦条纹花叶病毒(BSMV)的载体广泛用于单子叶植物。在三分体 BSMV 基因组中,目前使用 BSMV:γMCS 分子克隆靶基因的片段。作为替代方案,BSMV:β 分子在βc(ORF βc)和 poly(A)之间的开放阅读框中设计了一个独特的 BamHI 位点。α、βBamHI 和 γMCS 的 RNA 颗粒混合物具有完全感染性。大麦类胡萝卜素脱饱和酶和小麦磷脂酶 Dα 片段被克隆到βBamHI 和γMCS。在 γMCS 中递送靶基因片段可诱导更强的沉默,而在βBamHI 中则产生更稳定的转录物减少。对转录物的定量分析(qRT-PCR)表明,携带两个颗粒的片段诱导的沉默比携带一个颗粒的片段更强、更稳定。β的修饰可同时沉默两个基因。定量分析接种病毒的植物中的β和γ颗粒发现,γ比β高 2.5 倍,而β中的插入物稳定性比γ高。讨论了接种病毒的植物中β和γ颗粒的相对数量对插入物稳定性和基因沉默效率的可能影响。