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使用五个不同基因区域对牛病毒性腹泻病毒进行系统发育分析。

Phylogenetic analysis of bovine viral diarrhea viruses using five different genetic regions.

作者信息

Nagai Makoto, Hayashi Michiko, Sugita Shigeo, Sakoda Yoshihiro, Mori Masashi, Murakami Toshiaki, Ozawa Tadashi, Yamada Naoki, Akashi Hiroomi

机构信息

Ishikawa Hokubu Livestock Hygiene Service Center, Taturuhama, 929-2126, Ishikawa, Japan.

出版信息

Virus Res. 2004 Feb;99(2):103-13. doi: 10.1016/j.virusres.2003.10.006.

Abstract

Phylogenetic analysis of the five different regions (5' non-coding region (5'NCR), N(pro), E2, NS3 and NS5B-3'NCR) of 48 Japanese and reported bovine viral diarrhea virus (BVDV) genomes was performed. Japanese BVDVs were segregated into BVDV1 subdivided into six subgroups and BVDV2. One isolate, So CP/75, isolated in 1975 and previously proposed as subgroup 1e according to its 5'NCR sequence, was quite unique and formed an independent lineage in the tree of any region. Another isolate, 190CP, obtained from an experimental mucosal disease case was classified as subgroup 1e, defined by Becher et al. in the 5'NCR, N(pro) and E2 regions, whereas it was classified as subgroup 1a in the NS5B-3'NCR region. The genomic sequences of the American isolates ILLC and ILLNC obtained from the GenBank database were assigned into subgroup 1b in the 5'NCR, N(pro), E2 and NS5B-3'NCR regions, whereas they were assigned into subgroup 1a in the NS3 region, suggesting that recombination between the virus strains classified into different subgroups had occurred in an animal. These findings suggest that phylogenetic analysis of several genetic regions is useful for the further characterization of field BVDV isolates.

摘要

对48个日本及已报道的牛病毒性腹泻病毒(BVDV)基因组的五个不同区域(5'非编码区(5'NCR)、N(pro)、E2、NS3和NS5B - 3'NCR)进行了系统发育分析。日本的BVDV被分为BVDV1(细分为六个亚组)和BVDV2。一个于1975年分离得到的毒株So CP/75,根据其5'NCR序列先前被归为1e亚组,它非常独特,在任何区域的树状图中都形成了一个独立的分支。另一个从实验性黏膜病病例中获得的毒株190CP,在5'NCR、N(pro)和E2区域被Becher等人定义为1e亚组,而在NS5B - 3'NCR区域它被归为1a亚组。从GenBank数据库获得的美国分离株ILLC和ILLNC的基因组序列在5'NCR、N(pro)、E2和NS5B - 3'NCR区域被归为1b亚组,而在NS3区域它们被归为1a亚组,这表明在动物体内发生了不同亚组病毒株之间的重组。这些发现表明,对几个基因区域进行系统发育分析有助于进一步鉴定田间BVDV分离株。

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