School of Horticulture and Plant Protection, Yangzhou University, Yangzhou 225009, China.
Joint International Research Laboratory of Agriculture and Agri-Product Safety of Ministry of Education of China, Yangzhou University, Yangzhou 225009, China.
Viruses. 2021 Jan 28;13(2):198. doi: 10.3390/v13020198.
Broad bean wilt virus 2 (BBWV-2), which belongs to the genus of the family , is an important pathogen that causes damage to broad bean, pepper, yam, spinach and other economically important ornamental and horticultural crops worldwide. Previously, only limited reports have shown the genetic variation of BBWV2. Meanwhile, the detailed evolutionary changes, synonymous codon usage bias and host adaptation of this virus are largely unclear. Here, we performed comprehensive analyses of the phylodynamics, reassortment, composition bias and codon usage pattern of BBWV2 using forty-two complete genome sequences of BBWV-2 isolates together with two other full-length RNA1 sequences and six full-length RNA2 sequences. Both recombination and reassortment had a significant influence on the genomic evolution of BBWV2. Through phylogenetic analysis we detected three and four lineages based on the ORF1 and ORF2 nonrecombinant sequences, respectively. The evolutionary rates of the two BBWV2 ORF coding sequences were 8.895 × 10 and 4.560 × 10 subs/site/year, respectively. We found a relatively conserved and stable genomic composition with a lower codon usage choice in the two BBWV2 protein coding sequences. ENC-plot and neutrality plot analyses showed that natural selection is the key factor shaping the codon usage pattern of BBWV2. Strong correlations between BBWV2 and broad bean and pepper were observed from similarity index (SiD), codon adaptation index (CAI) and relative codon deoptimization index (RCDI) analyses. Our study is the first to evaluate the phylodynamics, codon usage patterns and adaptive evolution of a fabavirus, and our results may be useful for the understanding of the origin of this virus.
菜豆黄花叶病毒 2 型(BBWV-2)属于 病毒科 病毒属,是一种重要的病原体,可导致菜豆、辣椒、山药、菠菜和其他具有重要经济价值的观赏和园艺作物受损。以前,仅有限的报道显示了 BBWV2 的遗传变异。同时,这种病毒的详细进化变化、同义密码子使用偏好和宿主适应性在很大程度上尚不清楚。在这里,我们使用 42 个完整的 BBWV-2 分离株的基因组序列以及另外两个全长 RNA1 序列和六个全长 RNA2 序列,对 BBWV2 的系统发育动力学、重配、组成偏差和密码子使用模式进行了全面分析。重组和重配对 BBWV2 的基因组进化都有重大影响。通过系统发育分析,我们在 ORF1 和 ORF2 非重组序列上分别检测到三个和四个谱系。两个 BBWV2 ORF 编码序列的进化速率分别为 8.895×10 和 4.560×10 个核苷酸/位点/年。我们发现两个 BBWV2 蛋白编码序列的基因组组成相对保守且稳定,密码子使用选择较低。ENC-plot 和中性性 plot 分析表明,自然选择是塑造 BBWV2 密码子使用模式的关键因素。相似性指数(SiD)、密码子适应指数(CAI)和相对密码子去优化指数(RCDI)分析表明,BBWV2 与菜豆和辣椒之间存在较强的相关性。我们的研究首次评估了 Fabavirus 的系统发育动力学、密码子使用模式和适应性进化,我们的结果可能有助于理解该病毒的起源。