Tzanetakis Ioannis E, Postman Joseph D, Gergerich Rose C, Martin Robert R
Department of Botany and Plant Pathology, Oregon State University, Corvallis OR 97331, USA.
Virus Res. 2006 Nov;121(2):199-204. doi: 10.1016/j.virusres.2006.06.001. Epub 2006 Jul 11.
Several clones of golden ginger mint (Mentha x gracilis, 'Variegata') were found infected with Strawberry latent ringspot virus (SLRSV). The virus was purified and cloned and the complete nucleotide sequence of a mint isolate was obtained. RNA 1 consists of 7,496 nucleotides excluding the poly-A tail and encodes a polyprotein with signature enzymatic motifs found in other picorna-like plant viruses. RNA 2 consists of 3,842 nucleotides excluding the poly-A tail, encoding a polyprotein that is processed to a putative movement protein and the two coat proteins of the virus. A satellite RNA of 1,117 nucleotides was associated with this isolate encoding for a putative protein of 31 kDa. Phylogenetic analysis revealed that SLRSV shares characteristics with members of the Cheravirus, Fabavirus, Comovirus and Sadwavirus genera indicative of the uniqueness of SLRSV. The close relationship of SLRSV with these genera led to the examination of aphid and beetle transmission of the virus with, however, negative results.
发现几个金色姜薄荷(薄荷属杂交种,‘Variegata’)克隆体感染了草莓潜隐环斑病毒(SLRSV)。对该病毒进行了纯化和克隆,并获得了薄荷分离株的完整核苷酸序列。RNA 1由7496个核苷酸组成(不包括聚腺苷酸尾),编码一种多聚蛋白,该多聚蛋白具有在其他类小RNA植物病毒中发现的标志性酶基序。RNA 2由3842个核苷酸组成(不包括聚腺苷酸尾),编码一种多聚蛋白,该多聚蛋白可加工成一种假定的运动蛋白和病毒的两种外壳蛋白。一个1117个核苷酸的卫星RNA与该分离株相关,编码一种假定的31 kDa蛋白。系统发育分析表明,SLRSV与樱桃病毒属、蚕豆病毒属、豇豆花叶病毒属和萨德瓦病毒属的成员具有共同特征,这表明了SLRSV的独特性。SLRSV与这些属的密切关系导致了对该病毒的蚜虫和甲虫传播的研究,然而,结果为阴性。