Tenllado Francisco, Martínez-García Belén, Vargas Marisol, Díaz-Ruíz José Ramón
Departamento de Biología de Plantas, Centro de Investigaciones Biológicas, CSIC, Velázquez 144, Madrid 28006, Spain.
BMC Biotechnol. 2003 Mar 20;3:3. doi: 10.1186/1472-6750-3-3.
Double-stranded RNA (dsRNA) is a potent initiator of gene silencing in a diverse group of organisms that includes plants, Caenorhabditis elegans, Drosophila and mammals. We have previously shown and patented that mechanical inoculation of in vitro-transcribed dsRNA derived from viral sequences specifically prevents virus infection in plants. The approach required the in vitro synthesis of large amounts of RNA involving high cost and considerable labour.
We have developed an in vivo expression system to produce large amounts of virus-derived dsRNAs in bacteria, with a view to providing a practical control of virus diseases in plants. Partially purified bacterial dsRNAs promoted specific interference with the infection in plants by two viruses belonging to the tobamovirus and potyvirus groups. Furthermore, we have demonstrated that easy to obtain, crude extracts of bacterially expressed dsRNAs are equally effective protecting plants against virus infections when sprayed onto plant surfaces by a simple procedure. Virus infectivity was significantly abolished when plants were sprayed with French Press lysates several days before virus inoculation.
Our approach provides an alternative to genetic transformation of plant species with dsRNA-expressing constructs capable to interfere with plant viruses. The main advantage of this mode of dsRNA production is its simplicity and its extremely low cost compared with the requirements for regenerating transgenic plants. This approach provides a reliable and potential tool, not only for plant protection against virus diseases, but also for the study of gene silencing mechanisms in plant virus infections.
双链RNA(dsRNA)是包括植物、秀丽隐杆线虫、果蝇和哺乳动物在内的多种生物中基因沉默的有效引发剂。我们之前已经证明并获得专利,机械接种源自病毒序列的体外转录dsRNA可特异性预防植物中的病毒感染。该方法需要体外合成大量RNA,成本高昂且 laborious。
我们开发了一种体内表达系统,用于在细菌中产生大量病毒衍生的dsRNA,旨在为植物病毒病害提供切实可行的防治方法。部分纯化的细菌dsRNA对烟草花叶病毒属和马铃薯Y病毒属的两种病毒在植物中的感染产生了特异性干扰。此外,我们还证明,通过简单的程序将细菌表达的dsRNA的粗提物喷洒到植物表面时,其在保护植物免受病毒感染方面同样有效。在病毒接种前几天用法国压榨机裂解物喷洒植物时,病毒感染力显著消除。
我们的方法为用能够干扰植物病毒的dsRNA表达构建体对植物物种进行遗传转化提供了一种替代方法。这种dsRNA生产方式的主要优点是其简单性以及与再生转基因植物的要求相比成本极低。这种方法不仅为植物抗病毒病害提供了一种可靠且有潜力的工具,还为研究植物病毒感染中的基因沉默机制提供了工具。