Patil Atul B, Dalvi Vijayendra S, Mishra Akhilesh A, Krishna Bal, Azeez Abdul
Plant Virology Lab, Jain R&D, Jain Hills, Jain Irrigation Systems Limited, Jalgaon, 425001 India.
Plant Molecular Biology Lab, Jain R&D, Jain Hills, Jain Irrigation Systems Limited, Jalgaon, 425001 India.
Virusdisease. 2017 Jun;28(2):156-163. doi: 10.1007/s13337-017-0380-x. Epub 2017 May 18.
The banana is one of the world's most important livelihood crops. Banana plants are principally infected by four virus species, (genus ), (genus ), (genus ) and (genus ). The objective of this study is to understand the codon usage pattern and phylogeny of coat protein gene in different banana bract mosaic virus (BBrMV) isolates. The BBrMV Coat Protein (CP) gene was amplified from BBrMV infected banana plant samples collected from different districts of Tamil Nadu and Karnataka, India. Six new BBrMV isolates were submitted to National Center for Biotechnology Information. Phylogenetic analysis and codon usage indices were studied along with other isolates of BBrMV. Phylogenetic analysis of CP genes shows that most of BBrMV isolates are closely related to each other except KF385484.1 and KF385478.1. Relative codon usage patterns among different BBrMV isolates were calculated by software CodonW 1.4.2. In BBrMV, codons with A-ended or U ended are the most preferential except the Leu and Gln whose optimized codons are CAG and UUG ending by G. The codon usage patterns of BBrMV isolates are principally influenced by mutational bias; however, compositional constraints along with mutational bias also play a major role.
香蕉是世界上最重要的民生作物之一。香蕉植株主要受到四种病毒的感染,即(属)、(属)、(属)和(属)。本研究的目的是了解不同香蕉苞片花叶病毒(BBrMV)分离株中外壳蛋白基因的密码子使用模式和系统发育。从印度泰米尔纳德邦和卡纳塔克邦不同地区采集的受BBrMV感染的香蕉植株样本中扩增出BBrMV外壳蛋白(CP)基因。六个新的BBrMV分离株已提交至美国国立生物技术信息中心。对CP基因进行了系统发育分析,并与BBrMV的其他分离株一起研究了密码子使用指数。CP基因的系统发育分析表明,除KF385484.1和KF385478.1外,大多数BBrMV分离株彼此密切相关。使用CodonW 1.4.2软件计算不同BBrMV分离株之间的相对密码子使用模式。在BBrMV中,以A结尾或U结尾的密码子是最优先使用的,除了Leu和Gln,其优化密码子分别是CAG和以G结尾的UUG。BBrMV分离株的密码子使用模式主要受突变偏向的影响;然而,组成限制与突变偏向也起着重要作用。