首页> 外文期刊>Archives of virology >Molecular analysis of the genome segments S1, S4, S6, S7 and S12 of a Rice gall dwarf virus isolate from Thailand; completion of the genomic sequence.
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Molecular analysis of the genome segments S1, S4, S6, S7 and S12 of a Rice gall dwarf virus isolate from Thailand; completion of the genomic sequence.

机译:来自泰国的稻矮病毒分离株的基因组片段S1,S4,S6,S7和S12的分子分析;基因组序列的完成。

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摘要

The complete nucleotide sequences of the double-stranded RNA segments S1, S4, S6, S7 and S12 of the genome of a Rice gall dwarf virus (RGDV) isolate from Thailand were determined. The segments consisted of 4505, 2622, 1648, 1652 and 853 nucleotides, encoding putative proteins of 1458, 725, 489, 511 and 206 amino acids with molecular masses of approximately 166, 80, 53, 59 and 24 kDa, respectively. Homology searches indicated that each of the putative proteins has a counterpart in isolates of Rice dwarf virus (RDV) and Wound tumor virus, two other species in the genus Phytoreovirus. However, no similarities were found to other registered sequences, including those of other viruses that belong to the family Reoviridae. The identities between homologous structural proteins of RGDV and RDV ranged from 34 to 51% and were thus higher than those between homologous non-structural proteins of RGDV and RDV (16-37%). Among the nonstructural proteins, the highest amino acid sequence identity (37%) was observed forRGDV Pns11 and RDV Pns10, a constituent of tubular inclusions. This observation suggests that a specific amino acid backbone might be required for maintaining not only the three-dimensional structure of virions but also that of inclusions. The entire sequence of the RGDV genome is now available.
机译:确定了泰国稻gall矮病毒(RGDV)分离株基因组的双链RNA片段S1,S4,S6,S7和S12的完整核苷酸序列。这些区段由4505、2622、1648、1652和853个核苷酸组成,编码1458、725、489、511和206个氨基酸的推定蛋白质,分子量分别约为166、80、53、59和24 kDa。同源性研究表明,假定的蛋白质中的每一种在稻矮病毒(RDV)和伤口肿瘤病毒(植物病毒属中的另外两个物种)的分离物中都有一个对应物。但是,未发现与其他已注册序列的相似性,包括属于呼肠孤病毒科的其他病毒的相似性。 RGDV和RDV的同源结构蛋白之间的同一性介于34%至51%之间,因此高于RGDV和RDV的同源非结构蛋白之间的同一性(16-37%)。在非结构蛋白中,RGDV Pns11和RDV Pns10(管状内含物的组成部分)的氨基酸序列同一性最高(37%)。该观察结果表明,不仅维持病毒体的三维结构而且还需要包含物的三维结构,可能需要特定的氨基酸骨架。 RGDV基因组的完整序列现在可用。

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