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Molecular biological analysis of genotyping and phylogeny of severe acute respiratory syndrome associated coronavirus

机译:重症急性呼吸综合征冠状病毒基因分型和系统发育的分子生物学分析

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Background SARS-CoV is the causative agent of severe acute respiratory syndrome (SARS) which has been associated with outbreaks of SARS in Guangdong, Hong Kong and Beijing of China, and other regions worldwide. SARS-CoV from human has shown some variations but its origin is still unknown. The genotyping and phylogeny of SARS-CoV were analyzed and reported in this paper. Methods Full or partial genomes of 44 SARS-CoV strains were collected from GenBank. The genotype, single nucleotide polymorphism and phylogeny of these SARS-CoV strains were analyzed by molecular biological, bioinformatic and epidemiological methods. Results There were 188 point mutations in the 33 virus full genomes with the counts of mutation mounting to 297. Further analysis was carried out among 36 of 188 loci with more than two times of mutation. All the 36 mutation loci occurred in coding sequences and 22 loci were non-synonymous. The gene mutation rates of replicase 1 AB, S2 domain of spike glycoprotein and nucleocapsid protein were lower (0. 079% -0. 103%). There were 4 mutation loci in S1 domain of spike glycoprotein. The gene mutation rate of ORF10 was the highest (3. 333%) with 4 mutation loci in this small domain (120 bp) and 3 of 4 loci related to deletion mutation. By bioinformatics processing and analysis, the nucleotides at 7 loci of genome (T: T: A: G: T: C: T/C: G: G: A: C: T: C) can classify SARS-CoV into two types. Therefore a novel definition is put forward that according to these 7 loci of mutation, 40 strains of SARS-CoV in GenBank can be grouped into two genotypes ,T:T:A:G:T:C:T and C : G : G : A : C : T : C, and named as SARS-CoV Yexin genotype and Xiaohong genotype. The two genotypes can be further divided into some sub-genotypes. These genotypes can also be approved by phylogenetic tree of three levels of 44 loci of mutation, spike glycoprotein gene and complete genome sequence. Compared to various strains among SARS-CoV Yexin genotype and Xiaohong genotype, GD01 strain of Yexin genotype is more closely related to SARS-CoV like-virus from animals. Conclusion The results mentioned above suggest that SARS-CoV is responding to host immunological pressures and experiencing variation which provide clues, information and evidence of molecular biology for the clinical pathology, vaccine developing and epidemic investigation.
机译:背景SARS-CoV是严重急性呼吸道综合症(SARS)的病原体,SARS与中国广东省,香港和北京以及世界其他地区的SARS爆发有关。来自人类的SARS-CoV已经显示出一些变异,但其来源仍然未知。本文对SARS冠状病毒的基因型和系统发育进行了分析和报道。方法从GenBank中收集44株SARS-CoV病毒株的全部或部分基因组。通过分子生物学,生物信息学和流行病学方法分析了这些SARS-CoV菌株的基因型,单核苷酸多态性和系统发育。结果33个病毒全基因组中有188个点突变,突变计数达到297个。对188次基因座中的36个进行了两次以上的突变分析。全部36个突变基因座都发生在编码序列中,而22个基因座是非同义的。复制酶1 AB,刺突糖蛋白S2结构域和核衣壳蛋白的基因突变率较低(0. 079%-0。103%)。刺突糖蛋白的S1结构域有4个突变位点。 ORF10的基因突变率最高(3. 333%),在这个小域中有4个突变位点(120 bp),而与缺失突变相关的4个位点中有3个位点。通过生物信息学处理和分析,基因组的7个基因座上的核苷酸(T:T:A:G:T:C:T / C:G:G:A:C:T:C)可以将SARS-CoV分为两类。因此提出了一个新的定义,即根据这7个突变位点,GenBank中的40株SARS-CoV可以分为两种基因型,即T:T:A:G:T:C:T和C:G:G :A:C:T:C,分别命名为SARS-CoV Yexin基因型和Xiaohong基因型。两种基因型可以进一步分为一些亚基因型。这些基因型还可以​​通过具有44个突变位点,刺突糖蛋白基因和完整基因组序列这三个水平的系统发育树来批准。与SARS-CoV Yexin基因型和小红基因型中的各种菌株相比,Yexin基因型的GD01菌株与来自动物的SARS-CoV类病毒更紧密相关。结论上述结果表明,SARS-CoV应对宿主的免疫压力和经历变异,为临床病理,疫苗开发和流行病学研究提供了分子生物学的线索,信息和证据。

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