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从印度加尔各答检测出一种新型基因间重组诺如病毒。

Detection of a novel intergenogroup recombinant Norovirus from Kolkata, India.

作者信息

Nayak Mukti K, Balasubramanian Ganesh, Sahoo Ganesh C, Bhattacharya Rittwika, Vinje Jan, Kobayashi Nobumichi, Sarkar Mamta Chawla, Bhattacharya Mihir K, Krishnan Triveni

机构信息

Molecular Virology Laboratory, Diarrhoeal Disease Research and Control Centre, Division of Virology, National Institute of Cholera and Enteric Diseases, Beliaghata, Kolkata, 700010, India.

出版信息

Virology. 2008 Jul 20;377(1):117-23. doi: 10.1016/j.virol.2008.04.027.

Abstract

Mutation and recombination are recognized as important driving forces of evolution among RNA viruses. An intergenogroup recombinant norovirus strain [Hu/Kol/NLV/L8775/AB290150/2006/India] was detected in the faecal specimen of a 17 year old male, who had suffered from acute watery diarrhea and severe dehydration. Sequence analysis confirmed that this novel recombinant strain had a polymerase gene fragment that closely resembled a Norovirus (NoV) genogroup-I genotype-3 virus (HuCV/NLV/GI.3/VA98115/AY038598/1998/USA) and a capsid gene resembling NoV genogroup-II genotype-4 virus (NoV/Hu/GII.4/Terneuzen70/EF126964/2006/NL). The crossing over and recombination was observed at nucleotide (nt) 790 of NoV GI VA98115 strain and nt808 of NoV GII Terneuzen70 strain. In both parent strains conserved nucleotide sequence and hairpin structure (DNA secondary structure) were reported at the junction point of ORF1 and ORF2, exhibiting the mechanism of recombination in these viruses. Thus this novel recombinant NoV is another step in evolution among NoVs, indicating that constant surveillance is important to successfully monitor emergence of these strains.

摘要

突变和重组被认为是RNA病毒进化的重要驱动力。在一名17岁男性的粪便样本中检测到一种基因群间重组诺如病毒株[Hu/Kol/NLV/L8775/AB290150/2006/印度],该男性患有急性水样腹泻和严重脱水。序列分析证实,这种新型重组株的聚合酶基因片段与诺如病毒(NoV)基因群I基因型3病毒(HuCV/NLV/GI.3/VA98115/AY038598/1998/美国)非常相似,衣壳基因与NoV基因群II基因型4病毒(NoV/Hu/GII.4/Terneuzen70/EF126964/2006/荷兰)相似。在NoV GI VA98115株的核苷酸(nt)790和NoV GII Terneuzen70株的nt808处观察到交叉和重组。在两种亲本毒株中,ORF1和ORF2的连接点处均报告了保守的核苷酸序列和发夹结构(DNA二级结构),展示了这些病毒的重组机制。因此,这种新型重组NoV是NoV进化中的又一步,表明持续监测对于成功监测这些毒株的出现非常重要。

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