玉米接种甘蔗花叶病毒构建体及其在秋粘虫RNA干扰中的应用。

Iram Gull, Georg Jander
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摘要

病毒介导的瞬时基因过表达和基因表达沉默可用于筛选植物基因功能。甘蔗花叶病毒(SCMV)是马铃薯病毒科的一种正链RNA病毒,经修饰后可作为感染单子房植物(包括玉米)的载体,实现瞬时基因过表达和基因表达沉默。相对于稳定转化,scmv介导的玉米瞬时表达具有速度快、成本低的优点。在这里,我们描述了一种将构建体克隆到质粒载体pSCMV-CS3中的方案。用粒子轰击法构建pSCMV-CS3转化玉米幼苗后,该病毒在植株中系统地复制和传播。玉米幼苗的后续感染可以通过用侵染scmv植株的汁液摩擦接种来完成。作为该方法实际应用的一个例子,我们还描述了病毒诱导的秋粘虫(Spodoptera frugiperda)基因表达的基因沉默(VIGS)。转基因病毒是在玉米转化前将秋粘虫靶基因片段克隆到pSCMV-CS3中创建的。以感染该病毒的玉米植株为食,使其产生dsRNA以沉默秋粘虫靶基因的表达。利用SCMV对昆虫植物介导的VIGS进行检测,可以在毛毛虫以寄主植物为食时快速筛选基因功能。图形的概述。
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Inoculation of Maize with Sugarcane Mosaic Virus Constructs and Application for RNA Interference in Fall Armyworms.

Virus-mediated transient gene overexpression and gene expression silencing can be used to screen gene functions in plants. Sugarcane mosaic virus (SCMV) is a positive strand RNA virus in the Potyviridae family that has been modified to be used as vector to infect monocots, including maize (Zea mays), for transient gene overexpression and gene expression silencing. Relative to stable transformation, SCMV-mediated transient expression in maize has the advantages of being faster and less expensive. Here, we describe a protocol for cloning constructs into the plasmid vector pSCMV-CS3. After maize seedlings are transformed with pSCMV-CS3 constructs by particle bombardment, the virus replicates and spreads systemically in the plants. Subsequent infections of maize seedlings can be accomplished by rub inoculation with sap from SCMV-infested plants. As an example of a practical application of the method, we also describe virus-induced gene silencing (VIGS) of fall armyworm (Spodoptera frugiperda) gene expression. Transgenic viruses are created by cloning a segment of the fall armyworm target gene into pSCMV-CS3 prior to maize transformation. Caterpillars are fed on the virus-infected maize plants, which make dsRNA to silence the expression of the fall armyworm target gene after ingestion. This use of SCMV for plant-mediated VIGS in insects allows rapid screening of gene functions when caterpillars are feeding on their host plants. Graphical overview.

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