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Phylogenetic analysis and recombination events in full genome sequences of apple stem grooving virus

机译:苹果干切槽病毒全基因组序列的系统发育分析和重组事件

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Apple stem grooving virus (ASGV) is one of the most important viral pathogens infecting pome and stone fruit trees worldwide. In this study, with the complete nucleotide sequence of isolate ASGV-T47, which we generated, molecular variation and recombination in ASGV full genomic sequences worldwide were analyzed. ASGV-T47 shared 79.7-97.6% nucleotide identity with the other isolates worldwide and had the highest identity with an isolate from Japan. Phylogenetic analysis based on whole genome clustered all 16 isolates from around the world into two groups with no correlation to host or geographical origin. Four isolates were detected to be recombinants. Selection pressure estimation indicated that the two codons at positions 1756 and 1798 are under positive selection, while purifying selection is the primary evolutionary dynamics for ASGV.
机译:苹果茎槽感染病毒(ASGV)是感染全世界梨果和核果树的最重要的病毒病原体之一。在这项研究中,利用我们产生的分离株ASGV-T47的完整核苷酸序列,分析了全世界ASGV全基因组序列中的分子变异和重组。 ASGV-T47与全世界其他分离株共有79.7-97.6%的核苷酸同一性,并且与日本分离株具有最高的同一性。基于全基因组的系统发育分析将来自世界各地的所有16个分离株分为两组,与宿主或地理来源无关。检测到四个分离株是重组体。选择压力估计表明,位置1756和1798的两个密码子处于正选择状态,而纯化选择是ASGV的主要进化动力学。

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