Department of Plant Pathology, Iowa State University, Ames, Iowa 50011, USA.
Plant Physiol. 2010 May;153(1):52-65. doi: 10.1104/pp.109.151639. Epub 2010 Mar 3.
Plant viral vectors are valuable tools for heterologous gene expression, and because of virus-induced gene silencing (VIGS), they also have important applications as reverse genetics tools for gene function studies. Viral vectors are especially useful for plants such as soybean (Glycine max) that are recalcitrant to transformation. Previously, two generations of bean pod mottle virus (BPMV; genus Comovirus) vectors have been developed for overexpressing and silencing genes in soybean. However, the design of the previous vectors imposes constraints that limit their utility. For example, VIGS target sequences must be expressed as fusion proteins in the same reading frame as the viral polyprotein. This requirement limits the design of VIGS target sequences to open reading frames. Furthermore, expression of multiple genes or simultaneous silencing of one gene and expression of another was not possible. To overcome these and other issues, a new BPMV-based vector system was developed to facilitate a variety of applications for gene function studies in soybean as well as in common bean (Phaseolus vulgaris). These vectors are designed for simultaneous expression of multiple foreign genes, insertion of noncoding/antisense sequences, and simultaneous expression and silencing. The simultaneous expression of green fluorescent protein and silencing of phytoene desaturase shows that marker gene-assisted silencing is feasible. These results demonstrate the utility of this BPMV vector set for a wide range of applications in soybean and common bean, and they have implications for improvement of other plant virus-based vector systems.
植物病毒载体是异源基因表达的有价值的工具,由于病毒诱导的基因沉默 (VIGS),它们也作为反向遗传学工具在基因功能研究中具有重要的应用。病毒载体对于转化困难的大豆 (Glycine max) 等植物特别有用。以前,已经开发了两代豆荚斑驳病毒 (BPMV; 属 Comovirus) 载体,用于在大豆中过表达和沉默基因。然而,以前载体的设计限制了它们的用途。例如,VIGS 靶序列必须作为融合蛋白与病毒多蛋白的相同阅读框表达。这一要求将 VIGS 靶序列的设计限制在开放阅读框内。此外,不可能同时表达多个基因或同时沉默一个基因并表达另一个基因。为了克服这些问题和其他问题,开发了一种新的基于 BPMV 的载体系统,以促进大豆和普通菜豆 (Phaseolus vulgaris) 中基因功能研究的各种应用。这些载体设计用于同时表达多个外源基因、插入非编码/反义序列以及同时表达和沉默。绿色荧光蛋白的同时表达和类胡萝卜素脱饱和酶的沉默表明标记基因辅助沉默是可行的。这些结果表明,这种 BPMV 载体系统在大豆和普通菜豆的广泛应用中具有实用性,并且对其他基于植物病毒的载体系统的改进具有意义。