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本文引用的文献

1
Avian host spectrum of avipoxviruses.禽痘病毒的鸟类宿主谱。
Avian Pathol. 1999 Oct;28(5):415-32. doi: 10.1080/03079459994434.
2
Individual and population-level impacts of an emerging poxvirus disease in a wild population of great tits.在野生大山雀群体中暴发的新兴痘病毒病对个体和群体的影响。
PLoS One. 2012;7(11):e48545. doi: 10.1371/journal.pone.0048545. Epub 2012 Nov 21.
3
Emergence of a novel avian pox disease in British tit species.英国山雀科物种中出现一种新型禽痘病。
PLoS One. 2012;7(11):e40176. doi: 10.1371/journal.pone.0040176. Epub 2012 Nov 21.
4
Epidemiology of the emergent disease Paridae pox in an intensively studied wild bird population.研究密集型野生鸟类种群中新兴疾病 Paridae 痘的流行病学。
PLoS One. 2012;7(11):e38316. doi: 10.1371/journal.pone.0038316. Epub 2012 Nov 21.
5
Avian pox in Magellanic Penguins (Spheniscus magellanicus).麦哲伦企鹅(Spheniscus magellanicus)的禽痘
J Wildl Dis. 2012 Jul;48(3):790-4. doi: 10.7589/0090-3558-48.3.790.
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Avian poxvirus epizootic in a breeding population of Lesser Flamingos (Phoenicopterus minor) at Kamfers Dam, Kimberley, South Africa.南非金伯利坎弗斯大坝小粉红鹳(Phoenicopterus minor)繁殖种群中禽痘病毒的流行。
J Wildl Dis. 2011 Oct;47(4):989-93. doi: 10.7589/0090-3558-47.4.989.
7
MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods.MEGA5:用于最大似然法、进化距离法和最大简约法的分子进化遗传学分析。
Mol Biol Evol. 2011 Oct;28(10):2731-9. doi: 10.1093/molbev/msr121. Epub 2011 May 4.
8
Avian pox infection in a free-living crested serpent eagle (Spilornis cheela) in southern Taiwan.台湾南部一只自由生活的凤头鹰(凤头鹰)感染禽痘。
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110 years of Avipoxvirus in the Galapagos Islands.加拉帕戈斯群岛 110 年的禽痘病毒史。
PLoS One. 2011 Jan 13;6(1):e15989. doi: 10.1371/journal.pone.0015989.
10
Taqman real-time PCR detects Avipoxvirus DNA in blood of Hawai'i 'amakihi (Hemignathus virens).Taqman 实时 PCR 检测到夏威夷蜜雀(Hemignathus virens)血液中的禽痘病毒 DNA。
PLoS One. 2010 May 27;5(5):e10745. doi: 10.1371/journal.pone.0010745.

禽类痘病毒的全球系统发育关系。

Worldwide phylogenetic relationship of avian poxviruses.

机构信息

Institute for Veterinary Medical Research, Centre for Agricultural Research, Hungarian Academy of Sciences, Budapest, Hungary.

出版信息

J Virol. 2013 May;87(9):4938-51. doi: 10.1128/JVI.03183-12. Epub 2013 Feb 13.

DOI:10.1128/JVI.03183-12
PMID:23408635
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3624294/
Abstract

Poxvirus infections have been found in 230 species of wild and domestic birds worldwide in both terrestrial and marine environments. This ubiquity raises the question of how infection has been transmitted and globally dispersed. We present a comprehensive global phylogeny of 111 novel poxvirus isolates in addition to all available sequences from GenBank. Phylogenetic analysis of the Avipoxvirus genus has traditionally relied on one gene region (4b core protein). In this study we expanded the analyses to include a second locus (DNA polymerase gene), allowing for a more robust phylogenetic framework, finer genetic resolution within specific groups, and the detection of potential recombination. Our phylogenetic results reveal several major features of avipoxvirus evolution and ecology and propose an updated avipoxvirus taxonomy, including three novel subclades. The characterization of poxviruses from 57 species of birds in this study extends the current knowledge of their host range and provides the first evidence of the phylogenetic effect of genetic recombination of avipoxviruses. The repeated occurrence of avian family or order-specific grouping within certain clades (e.g., starling poxvirus, falcon poxvirus, raptor poxvirus, etc.) indicates a marked role of host adaptation, while the sharing of poxvirus species within prey-predator systems emphasizes the capacity for cross-species infection and limited host adaptation. Our study provides a broad and comprehensive phylogenetic analysis of the Avipoxvirus genus, an ecologically and environmentally important viral group, to formulate a genome sequencing strategy that will clarify avipoxvirus taxonomy.

摘要

痘病毒已在全球陆地和海洋环境中的 230 种野生和家养鸟类中被发现。这种无处不在的情况引发了一个问题,即感染是如何传播和在全球范围内传播的。我们提出了一个 111 个新型痘病毒分离株的全面全球系统发育,以及来自 GenBank 的所有可用序列。禽痘病毒属的系统发育分析传统上依赖于一个基因区域(4b 核心蛋白)。在本研究中,我们将分析扩展到包括第二个基因座(DNA 聚合酶基因),从而提供了更稳健的系统发育框架、特定群体内更精细的遗传分辨率以及潜在重组的检测。我们的系统发育结果揭示了禽痘病毒进化和生态学的几个主要特征,并提出了更新的禽痘病毒分类法,包括三个新的亚群。本研究对来自 57 种鸟类的痘病毒的特征描述扩展了它们宿主范围的现有知识,并首次提供了禽痘病毒遗传重组的系统发育影响的证据。某些分支中鸟类科或目特异性分组的反复出现(例如,八哥痘病毒、隼痘病毒、猛禽痘病毒等)表明宿主适应的明显作用,而在猎物-捕食者系统中共享痘病毒物种强调了跨物种感染和有限宿主适应的能力。我们的研究为禽痘病毒属提供了广泛而全面的系统发育分析,这是一个具有生态和环境重要性的病毒群,为制定明确禽痘病毒分类的基因组测序策略提供了依据。