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Molecular characterization of a novel Muscovy duck parvovirus isolate: evidence of recombination between classical MDPV and goose parvovirus strains

机译:新型番鸭细小病毒分离株的分子特征:经典MDPV和鹅细小病毒株重组的证据

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Muscovy duck parvovirus (MDPV) and Goose parvovirus (GPV) are important etiological agents for Muscovy duck parvoviral disease and Derzsy’s disease, respectively; both of which can cause substantial economic losses in waterfowl industry. In contrast to GPV, the complete genomic sequence data of MDPV isolates are still limited and their phylogenetic relationships largely remain unknown. In this study, the entire genome of a pathogenic MDPV strain ZW, which was isolated from a deceased Muscovy duckling in 2006 in China, was cloned, sequenced, and compared with that of other classical MDPV and GPV strains. The genome of strain ZW comprises of 5071 nucleotides; this genome was shorter than that of the pathogenic MDPV strain YY (5075?nt). All the four deleted nucleotides produced in strain ZW are located at the base-pairing positions in the palindromic stem of inverted terminal repeats (ITR) without influencing the formation of a hairpin structure. Recombination analysis revealed that strain ZW originated from genetic recombination between the classical MDPV and GPV strain. The YY strain of MDPV acts as the major parent, whereas the virulent strains YZ99–6 and B and the vaccine strain SYG61v of GPV act as the minor parents in varying degrees. Two recombination sites were detected in strain ZW, with the small recombination site surrounding the P9 promoter, and the large recombination site situated in the middle of the VP3 gene. The SYG61V strain is a vaccine strain used for preventing goose parvoviral disease. This strain was found to be solely involved in the recombination event detected in the P9 promoter region. Phylogenetic analyses between strain ZW and other classical strains of MDPV and GPV were performed. The results supported the in silico recombination analysis conclusion. MDPV Strain ZW is a novel recombinant parvovirus, and the bulk of its genome originates from the classical MDPV strain. Two virulent strains and a vaccine strain of GPV were involved in the recombination process in varying degrees.
机译:番鸭细小病毒(MDPV)和鹅细小病毒(GPV)分别是番鸭细小病毒病和Derzsy病的重要病原体。两者都会给水禽业造成巨大的经济损失。与GPV相比,MDPV分离株的完整基因组序列数据仍然有限,而且它们的系统发生关系在很大程度上仍然未知。在这项研究中,克隆,测序并与其他经典MDPV和GPV菌株的序列进行了克隆,测序,病原性MDPV菌株ZW的整个基因组,该菌株是在2006年从中国已故番鸭中分离出来的。 ZW菌株的基因组包含5071个核苷酸;该基因组比致病性MDPV菌株YY(5075?nt)短。 ZW菌株中产生的所有四个缺失核苷酸都位于反向末端重复序列(ITR)回文茎中的碱基配对位置,而不会影响发夹结构的形成。重组分析表明,ZW菌株起源于经典MDPV和GPV菌株之间的基因重组。 MDPV的YY菌株作为主要亲本,而GPV的强毒株YZ99-6和B和疫苗菌株SYG61v在不同程度上充当未成年亲本。在ZW菌株中检测到两个重组位点,其中小的重组位点围绕P9启动子,而较大的重组位点位于VP3基因的中间。 SYG61V株是用于预防鹅细小病毒病的疫苗株。发现该菌株仅参与在P9启动子区域中检测到的重组事件。进行了ZW菌株与其他经典MDPV和GPV菌株之间的系统发育分析。结果支持了计算机重组分析的结论。 MDPV株ZW是一种新型的重组细小病毒,其基因组大部分来自经典的MDPV株。 GPV的两个强毒株和疫苗株在不同程度上参与了重组过程。

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