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伊朗库尔德斯坦菌株的全基因组序列

Complete Genome Sequence of Strain Kurdistan, Iran.

作者信息

Maghamnia Hamid Reza, Hajizadeh Mohammad, Azizi Abdolbaset

机构信息

Plant Protection Department, Faculty of Agriculture, University of Kurdistan, Sanandaj, Iran.

出版信息

3 Biotech. 2018 Mar;8(3):147. doi: 10.1007/s13205-018-1177-3. Epub 2018 Feb 22.

Abstract

The complete genome sequence of strain Kurdistan (ZYMV-Kurdistan) infecting squash from Iran was determined from 13 overlapping fragments. Excluding the poly (A) tail, ZYMV-Kurdistan genome consisted of 9593 nucleotides (nt), with 138 and 211 nt at the 5' and 3' non-translated regions, respectively. It contained two open-reading frames (ORFs), the large ORF encoding a polyprotein of 3080 amino acids (aa) and the small overlapping ORF encoding a P3N-PIPO protein of 74 aa. This isolate had six unique aa differences compared to other ZYMV isolates and shared 79.6-98.8% identities with other ZYMV genome sequences at the nt level and 90.1-99% identities at the aa level. A phylogenetic tree of ZYMV complete genomic sequences showed that Iranian and Central European isolates are closely related and form a phylogenetically homogenous group. All values in the ratio of substitution rates at non-synonymous and synonymous sites (/) were below 1, suggestive of strong negative selection forces during ZYMV protein history. This is the first report of complete genome sequence information of the most prevalent virus in the west of Iran. This study helps our understanding of the genetic diversity of ZYMV isolates infecting cucurbit plants in Iran, virus evolution and epidemiology and can assist in designing better diagnostic tools.

摘要

从13个重叠片段中确定了来自伊朗感染南瓜的库尔德斯坦毒株(ZYMV-库尔德斯坦)的完整基因组序列。除去多聚(A)尾,ZYMV-库尔德斯坦基因组由9593个核苷酸(nt)组成,5'和3'非翻译区分别有138和211个nt。它包含两个开放阅读框(ORF),大的ORF编码一个由3080个氨基酸(aa)组成的多聚蛋白,小的重叠ORF编码一个由74个aa组成的P3N-PIPO蛋白。与其他ZYMV分离株相比,该分离株有6个独特的氨基酸差异,在核苷酸水平上与其他ZYMV基因组序列的同源性为79.6%-98.8%,在氨基酸水平上为90.1%-99%。ZYMV完整基因组序列的系统发育树表明,伊朗和中欧的分离株密切相关,形成一个系统发育上同质的群体。非同义位点与同义位点的替换率比值(/)的所有值均低于1,表明在ZYMV蛋白质进化过程中存在强烈的负选择压力。这是关于伊朗西部最普遍病毒完整基因组序列信息的首次报道。这项研究有助于我们了解感染伊朗葫芦科植物的ZYMV分离株的遗传多样性、病毒进化和流行病学,并有助于设计更好的诊断工具。

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