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本文引用的文献

1
Newcastle disease virus fusion and haemagglutinin-neuraminidase gene motifs as markers for viral lineage.新城疫病毒融合基因和血凝素-神经氨酸酶基因基序作为病毒谱系的标记。
Avian Pathol. 2003 Aug;32(4):361-73. doi: 10.1080/0307945031000121112.
2
Characterization of class I Newcastle disease virus isolates from Hong Kong live bird markets and detection using real-time reverse transcription-PCR.香港活禽市场I类新城疫病毒分离株的特性及实时逆转录-聚合酶链反应检测
J Clin Microbiol. 2007 Apr;45(4):1310-4. doi: 10.1128/JCM.02594-06. Epub 2007 Feb 7.
3
Third genome size category of avian paramyxovirus serotype 1 (Newcastle disease virus) and evolutionary implications.禽副粘病毒1型(新城疫病毒)的第三种基因组大小类别及其进化意义。
Virus Res. 2006 Sep;120(1-2):36-48. doi: 10.1016/j.virusres.2005.11.009.
4
A virological survey in migrating waders and other waterfowl in one of the most important resting sites of Germany.在德国最重要的停歇地之一,对迁徙涉禽和其他水鸟进行的病毒学调查。
J Vet Med B Infect Dis Vet Public Health. 2006 Apr;53(3):105-10. doi: 10.1111/j.1439-0450.2006.00935.x.
5
Global patterns of influenza a virus in wild birds.野生鸟类中甲型流感病毒的全球分布模式。
Science. 2006 Apr 21;312(5772):384-8. doi: 10.1126/science.1122438.
6
Avian influenza viruses and paramyxoviruses in wintering and resident ducks in Texas.德克萨斯州越冬鸭和留鸟鸭体内的禽流感病毒和副粘病毒
J Wildl Dis. 2005 Jul;41(3):624-8. doi: 10.7589/0090-3558-41.3.624.
7
Phylogenetic analyses of type A influenza genes in natural reservoir species in North America reveals genetic variation.对北美天然宿主物种中甲型流感病毒基因的系统发育分析揭示了基因变异。
Virus Res. 2005 Dec;114(1-2):89-100. doi: 10.1016/j.virusres.2005.05.013. Epub 2005 Jul 21.
8
PHYML Online--a web server for fast maximum likelihood-based phylogenetic inference.PHYML在线工具——一个基于最大似然法的快速系统发育推断的网络服务器。
Nucleic Acids Res. 2005 Jul 1;33(Web Server issue):W557-9. doi: 10.1093/nar/gki352.
9
Genomic sequences of low-virulence avian paramyxovirus-1 (Newcastle disease virus) isolates obtained from live-bird markets in North America not related to commonly utilized commercial vaccine strains.从北美活禽市场获得的低毒力禽副粘病毒1型(新城疫病毒)分离株的基因组序列,与常用的商业疫苗株无关。
Vet Microbiol. 2005 Mar 20;106(1-2):7-16. doi: 10.1016/j.vetmic.2004.11.013. Epub 2005 Jan 28.
10
A molecular epidemiological investigation of isolates of the variant avian paramyxovirus type 1 virus (PPMV-1) responsible for the 1978 to present panzootic in pigeons.对导致1978年至今鸽子发生大流行的1型禽副粘病毒变异株(PPMV-1)分离株进行的分子流行病学调查。
Avian Pathol. 2004 Apr;33(2):258-69. doi: 10.1080/0307945042000195768.

水禽和滨鸟低毒力新城疫病毒的系统发育多样性以及与家禽源分离株的基因型分布比较。

Phylogenetic diversity among low-virulence newcastle disease viruses from waterfowl and shorebirds and comparison of genotype distributions to those of poultry-origin isolates.

作者信息

Kim L Mia, King Daniel J, Curry Phillip E, Suarez David L, Swayne David E, Stallknecht David E, Slemons Richard D, Pedersen Janice C, Senne Dennis A, Winker Kevin, Afonso Claudio L

机构信息

USDA ARS Southeast Poultry Research Laboratory, Athens, GA 30605, USA.

出版信息

J Virol. 2007 Nov;81(22):12641-53. doi: 10.1128/JVI.00843-07. Epub 2007 Sep 12.

DOI:10.1128/JVI.00843-07
PMID:17855536
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2169019/
Abstract

Low-virulence Newcastle disease viruses (loNDV) are frequently recovered from wild bird species, but little is known about their distribution, genetic diversity, or potential to cause disease in poultry. NDV isolates recovered from cloacal samples of apparently healthy waterfowl and shorebirds (WS) in the United States during 1986 to 2005 were examined for genomic diversity and their potential for virulence (n = 249). In addition 19 loNDV isolates from U.S. live bird markets (LBMs) were analyzed and found to be genetically distinct from NDV used in live vaccines but related to WS-origin NDV. Phylogenetic analysis of the fusion protein identified nine novel genotypes among the class I NDV, and new genomic subgroups were identified among genotypes I and II of the class II viruses. The WS-origin viruses exhibited broad genetic and antigenic diversity, and some WS genotypes displayed a closer phylogenetic relationship to LBM-origin NDV. All NDV were predicted to be lentogenic based upon sequencing of the fusion cleavage site, intracerebral pathogenicity index, or mean death time in embryo assays. The USDA real-time reverse transcription-PCR assay, which targets the matrix gene, identified nearly all of the class II NDV tested but failed to detect class I viruses from both LBM and WS. The close phylogenetic proximity of some WS and LBM loNDV suggests that viral transmission may occur among wild birds and poultry; however, these events may occur unnoticed due to the broad genetic diversity of loNDV, the lentogenic presentation in birds, and the limitations of current rapid diagnostic tools.

摘要

低毒力新城疫病毒(loNDV)常从野生鸟类中分离得到,但对其分布、遗传多样性或在家禽中引发疾病的可能性了解甚少。对1986年至2005年期间从美国表面健康的水禽和滨鸟(WS)泄殖腔样本中分离出的新城疫病毒(NDV)进行了基因组多样性及其毒力潜力检测(n = 249)。此外,对来自美国活禽市场(LBM)的19株低毒力新城疫病毒分离株进行了分析,发现它们在基因上与活疫苗中使用的新城疫病毒不同,但与源自水禽和滨鸟的新城疫病毒相关。融合蛋白的系统发育分析在I类新城疫病毒中鉴定出9种新基因型,在II类病毒的基因型I和II中鉴定出新的基因组亚群。源自水禽和滨鸟的病毒表现出广泛的遗传和抗原多样性,一些水禽和滨鸟基因型与源自活禽市场的新城疫病毒具有更近的系统发育关系。根据融合裂解位点测序、脑内致病性指数或胚胎试验中的平均死亡时间预测,所有新城疫病毒均为弱毒株。美国农业部针对基质基因的实时逆转录 - PCR检测方法,几乎能检测出所有检测的II类新城疫病毒,但未能检测出来自活禽市场和水禽及滨鸟的I类病毒。一些源自水禽和滨鸟以及活禽市场的低毒力新城疫病毒在系统发育上的密切关系表明,病毒可能在野生鸟类和家禽之间传播;然而,由于低毒力新城疫病毒的广泛遗传多样性、在鸟类中的弱毒株表现以及当前快速诊断工具的局限性,这些传播事件可能未被注意到。