首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >Codon usage in Alphabaculovirus and Betabaculovirus hosted by the same insect species is weak, selection dominated and exhibits no more similar patterns than expected
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Codon usage in Alphabaculovirus and Betabaculovirus hosted by the same insect species is weak, selection dominated and exhibits no more similar patterns than expected

机译:同一昆虫物种携带的杆状病毒和乙状杆状病毒的密码子使用情况较弱,选择占主导地位,并且表现出的模式与预期的相似

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Mutations shape synonymous codon usage bias in certain organism genomes, while selection shapes it in others. Lepidopteran-specific Alphabaculovirus and Betabaculovirus are two large genera in the family of Baculoviridae. In this study, we analyzed the codon usage patterns in 17 baculoviruses, including 10 alphabaculoviruses and 7 betabaculoviruses, which were isolated from seven insect species, and we characterized the codon usage patterns between Alphabaculovirus and Betabaculovirus. Our results show that all the baculoviruses possessed a general weak trend of codon bias. The differences of ENc (effective number of codons) values, nucleotide contents and the impacts of nucleotide content on ENc value within alpha-/betabaculovirus pairs were independent of whether the host species are the same or different. Furthermore, the majority of amino acid sequences adopted codons unequally in all viruses, but the numbers of common preferred codons between alpha- and betabaculoviruses hosted by the same insect species were not significantly different from the differences observed between alpha- and betabaculoviruses hosted by different insect species. In addition, the amino acids that adopt the same synonymous codon composition between alpha- and betabaculoviruses hosted by the same insect species were statistically as few as those between alpha- and betabaculoviruses hosted by different insect species. Correspondence analysis revealed that no major factors resulted in the codon bias in these baculoviruses, implying multiple minor influential factors exist. Neutrality plot analysis indicated that selection pressure dominated mutations in shaping the codon usage. However, the levels of selection pressure were not significantly different among viruses hosted by the same insect species. We expect that evolution would cause the alpha- and betabaculoviruses hosted by the same insect species to share more patterns, but this effect was not observed. (C) 2016 Elsevier B.V. All rights reserved.
机译:突变会在某些生物基因组中形成同义密码子使用偏向,而选择则会在其他生物基因组中对其产生偏见。鳞翅目特定的杆状病毒和β杆状病毒是杆状病毒科的两个大属。在这项研究中,我们分析了从7种昆虫中分离出的17种杆状病毒(包括10种杆状病毒和7种β杆状病毒)的密码子使用方式,并描述了杆状病毒和β杆状病毒之间的密码子使用方式。我们的结果表明,所有杆状病毒都具有密码子偏倚的总体弱势趋势。在α-/β杆状病毒对中,ENc(有效密码子数)值,核苷酸含量以及核苷酸含量对ENc值的影响之间的差异与宿主物种是否相同无关。此外,大多数氨基酸序列在所有病毒中均采用不均等的密码子,但是同一昆虫物种所携带的α-和杆状病毒之间的共同优选密码子数与不同昆虫所携带的α-和杆状病毒之间所观察到的差异没有显着差异。种类。另外,在统计上,由相同昆虫物种宿主的α-和杆状病毒之间具有相同同义密码子组成的氨基酸在统计学上与由不同昆虫物种宿主的α-和β杆状病毒之间的氨基酸少。对应分析表明,这些杆状病毒中没有主要因素导致密码子偏倚,这意味着存在多个次要影响因素。中性图分析表明在选择密码子时,选择压力主导了突变。然而,选择压力的水平在相同昆虫物种携带的病毒之间没有显着差异。我们预期进化将导致同一昆虫物种宿主的α和β杆状病毒共享更多模式,但未观察到这种影响。 (C)2016 Elsevier B.V.保留所有权利。

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