Moradi Zohreh, Mehrvar Mohsen
Department of Plant Pathology, Faculty of Crop Sciences, Sari Agricultural Sciences and Natural Resources University, P.O. BOX 578, Sari, Iran.
Department of Plant Pathology, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran.
Virusdisease. 2021 Mar;32(1):155-160. doi: 10.1007/s13337-021-00671-w. Epub 2021 Mar 7.
Iranian johnsongrass mosaic virus (IJMV, genus , family ) is one of the most prevalent viruses causing maize mosaic disease in Iran. In this study, the complete genomes (9,618 and 9,543 nucleotides) of two highly divergent IJMV isolates (Maz2 and Maz3) were obtained from the metagenomic analysis of RNAs using Illumina sequencing. The genome contained a single open reading frame (9,165 nucleotides) encoding a polyprotein of 3,054 amino acids, flanked by a 5'-untranslated region (UTR) of 216 and 143 nucleotides and a 3'-UTR of 237 and 235 nucleotides. A comparative analysis of the complete genome showed that IJMV-Maz2 and Maz3 had 85.99% nucleotide and 94.56% amino acid sequence identity with each other and shared 84.87-88.74% nt and 94.24-96.17% aa identity with those of two other IJMV isolates available in the GenBank. The coat protein of Maz2 and Maz3 showed 86.40-95.72% nt sequence identity (90.79-97.70% aa identity) to 12 other IJMV isolates available in GenBank. Our results indicated a relatively stable and conserved genomic composition with a low codon usage bias in all of the assayed IJMV coding sequences. Analysis of various population genetics parameters and distribution of synonymous and nonsynonymous mutations revealed that purifying selection pressure was the major force acting upon the IJMV genome. The outcome of the study provides valuable insights on the evolution of IJMV genome, for which there are few genome sequences available, and informs the current breeding efforts towards resistance for IJMV.
伊朗约翰逊草花叶病毒(IJMV,属,科)是伊朗引起玉米花叶病的最普遍病毒之一。在本研究中,通过对RNA进行Illumina测序的宏基因组分析,获得了两个高度不同的IJMV分离株(Maz2和Maz3)的完整基因组(分别为9618和9543个核苷酸)。该基因组包含一个单一的开放阅读框(9165个核苷酸),编码一个由3054个氨基酸组成的多聚蛋白,两侧分别是216和143个核苷酸的5'非翻译区(UTR)以及237和235个核苷酸的3'UTR。对完整基因组的比较分析表明,IJMV-Maz2和Maz3彼此之间具有85.99%的核苷酸和94.56%的氨基酸序列同一性,并且与GenBank中其他两个IJMV分离株的核苷酸同一性为84.87 - 88.74%,氨基酸同一性为94.24 - 96.17%。Maz2和Maz3的外壳蛋白与GenBank中其他12个IJMV分离株的核苷酸序列同一性为86.40 - 95.72%(氨基酸同一性为90.79 - 97.70%)。我们的结果表明,在所有检测的IJMV编码序列中,基因组组成相对稳定且保守,密码子使用偏好较低。对各种群体遗传学参数以及同义突变和非同义突变分布的分析表明,纯化选择压力是作用于IJMV基因组的主要力量。该研究结果为IJMV基因组的进化提供了有价值的见解,目前IJMV的基因组序列较少,同时也为当前针对IJMV抗性的育种工作提供了参考。