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基于开放阅读框0对伊朗马铃薯卷叶病毒种群的遗传分析。

Genetic analysis of Iranian population of Potato leafroll virus based on ORF0.

作者信息

Zarghani Shaheen Nourinejhad, Shams-Bakhsh Masoud, Zand Neda, Sokhandan-Bashir Nemat, Pazhouhandeh Maghsoud

机构信息

Department of Plant Pathology, Faculty of Agriculture, Tarbiat Modares University, Tehran, Iran.

出版信息

Virus Genes. 2012 Dec;45(3):567-74. doi: 10.1007/s11262-012-0804-z. Epub 2012 Aug 18.

Abstract

Potato leafroll virus (PLRV) is a destructive virus of potatoes and responsible for high yield losses wherever potatoes are grown. In this study, DNA fragments containing ORF0 from each of nine PLRV isolates was sequenced. Sequence analysis data using 36 isolates from 12 different countries including 14 Iranian isolates showed that the identities of ORF0 at both nucleotide and amino acid levels between the Iranian isolates were 96-100 % and these isolates were more similar to the European PLRV isolates than to the other isolates. Furthermore, phylogenetic and population genetic analysis were carried out on the basis of full-length ORF0 and overlapping and non-overlapping regions of ORF0 and ORF1 (ORF0/1) which revealed that PLRV isolates were not geographically resolved. Also, we identified negative selection with different ratios for each of the mentioned genomic regions suggesting effects of F-box motif and -1 frameshift on ORF0 non-overlapping region and ORF0/1 in the selection pressure, respectively. Five recombination events were detected in the Iranian, Australian, and European isolates suggesting an important role for this phenomenon in influencing genetic diversity within this virus population.

摘要

马铃薯卷叶病毒(PLRV)是一种对马铃薯具有毁灭性的病毒,在任何种植马铃薯的地方都会导致产量大幅损失。在本研究中,对来自9个PLRV分离株的包含ORF0的DNA片段进行了测序。使用来自12个不同国家的36个分离株(包括14个伊朗分离株)的序列分析数据表明,伊朗分离株之间ORF0在核苷酸和氨基酸水平上的同一性为96 - 100%,并且这些分离株与欧洲PLRV分离株的相似性高于其他分离株。此外,基于全长ORF0以及ORF0和ORF1的重叠和非重叠区域(ORF0/1)进行了系统发育和群体遗传分析,结果表明PLRV分离株在地理上没有得到区分。而且,我们确定了上述每个基因组区域具有不同比例的负选择,这分别表明F - box基序和 - 1移码对选择压力下ORF0非重叠区域和ORF0/1的影响。在伊朗、澳大利亚和欧洲分离株中检测到5次重组事件,表明这种现象在影响该病毒群体内的遗传多样性方面具有重要作用。

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