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Analysis of genomic sequences of 95 papillomavirus types: uniting typing phylogeny and taxonomy.

机译:分析95种乳头瘤病毒类型的基因组序列:统一分型系统发育和分类学。

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摘要

Our aim was to study the phylogenetic relationships of all known papillomaviruses (PVs) and the possibility of establishing a supratype taxonomic classification based on this information. Of the many detectably homologous segments present in PV genomes, a 291-bp segment of the L1 gene is notable because it is flanked by the MY09 and MY11 consensus primers and contains highly conserved amino acid residues which simplify sequence alignment. We determined the MY09-MY11 sequences of human PV type 20 (HPV-20), HPV-21, HPV-22, HPV-23, HPV-24, HPV-36, HPV-37, HPV-38, HPV-48, HPV-50, HPV-60, HPV-70, HPV-72, HPV-73, ovine (sheep) PV, bovine PV type 3 (BPV-3), BPV-5, and BPV-6 and created a database which now encompasses HPV-1 to HPV-70, HPV-72, HPV-73, seven yet untyped HPV genomes, and 15 animal PV types. Three additional animal PVs were analyzed on the basis of other sequence data. We constructed phylogenies based on partial L1 and E6 gene sequences and distinguished five major clades that we call supergroups. One of them unites 54 genital PV types, which can be further divided into eleven groups. The second supergroup has 24 types and unites most PVs that are typically found in epidermodysplasia verruciformis patients but also includes several types typical of other cutaneous lesions, like HPV-4. The third supergroup unites the six known ungulate fibropapillomaviruses, the fourth includes the cutaneous ungulate PVs BPV-3, BPV-4, and BPV-6, and the fifth includes HPV-1, HPV-41, HPV-63, the canine oral PV, and the cottontail rabbit PV. The chaffinch PV and two rodent PVs, Micromys minutus PV and Mastomys natalensis PV, are left ungrouped because of the relative isolation of each of their lineages. Within most supergroups, groups formed on the basis of cladistic principles unite phenotypically similar PV types. We discuss the basis of our classification, the concept of the PV type, speciation, PV-host evolution, and estimates of their rates of evolution.
机译:我们的目的是研究所有已知的乳头瘤病毒(PVs)的系统发育关系,以及基于此信息建立超类型分类学分类的可能性。在PV基因组中存在的许多可检测到的同源区段中,L1基因的291 bp区段非常引人注目,因为其侧翼是MY09和MY11共有引物,并且含有高度保守的氨基酸残基,可简化序列比对。我们确定了20型人类PV(HPV-20),HPV-21,HPV-22,HPV-23,HPV-24,HPV-36,HPV-37,HPV-38,HPV-48, HPV-50,HPV-60,HPV-70,HPV-72,HPV-73,绵羊(绵羊)PV,3型牛PV(BPV-3),BPV-5和BPV-6,并创建了一个数据库涵盖HPV-1至HPV-70,HPV-72,HPV-73,七个尚未分型的HPV基因组和15种动物PV类型。根据其他序列数据分析了另外三个动物PV。我们基于L1和E6基因的部分序列构建了系统进化树,并区分了五个主要进化枝,我们称之为超群。其中之一将54种生殖器PV类型结合在一起,可以进一步分为11组。第二超群具有24种类型,并且将通常在疣状表皮增生症患者中发现的大多数PV结合在一起,但也包括其他皮肤病变(例如HPV-4)的几种典型类型。第三个超群将六种已知的有蹄类动物纤毛乳头瘤病毒联合在一起,第四个超人包括皮肤有蹄类动物BPV-3,BPV-4和BPV-6,第五个包括HPV-1,HPV-41,HPV-63,犬口腔PV ,以及棉尾兔PV。燕雀PV和两个啮齿类动物PV,Micromys minutus PV和Mastomys natalensis PV,由于它们各自的血统相对隔离而未分组。在大多数超群中,基于进化论原则形成的群将表型相似的PV类型结合在一起。我们讨论了分类的基础,PV类型的概念,物种形成,PV宿主进化以及它们的进化速率估计。

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