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Molecular evolution and emergence of avian gammacoronaviruses

机译:禽伽马冠状病毒的分子进化和出现

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摘要

Coronaviruses, which are single stranded, positive sense RNA viruses, are responsible for a wide variety of existing and emerging diseases in humans and other animals. The gammacoronaviruses primarily infect avian hosts. Within this genus of coronaviruses, the avian coronavirus infectious bronchitis virus (IBV) causes a highly infectious upper-respiratory tract disease in commercial poultry. IBV shows rapid evolution in chickens, frequently producing new antigenic types, which adds to the multiple serotypes of the virus that do not cross protect. Rapid evolution in IBV is facilitated by strong selection, large population sizes and high genetic diversity within hosts, and transmission bottlenecks between hosts. Genetic diversity within a host arises primarily by mutation, which includes substitutions, insertions and deletions. Mutations are caused both by the high error rate, and limited proof reading capability, of the viral RNA-dependent RNA-polymerase, and by recombination. Recombination also generates new haplotype diversity by recombining existing variants. Rapid evolution of avian coronavirus IBV makes this virus extremely difficult to diagnose and control, but also makes it an excellent model system to study viral genetic diversity and the mechanisms behind the emergence of coronaviruses in their natural host. (C) 2012 Elsevier B.V. All rights reserved.
机译:冠状病毒是单链,正向RNA病毒,可导致人类和其他动物的各种现有和新兴疾病。 γ冠状病毒主要感染禽类宿主。在这种冠状病毒属中,禽冠状病毒感染性支气管炎病毒(IBV)在商业家禽中引起高度感染性的上呼吸道疾病。 IBV在鸡中显示出快速的进化,经常产生新的抗原类型,从而增加了无法交叉保护的多种血清型。强劲的选择,寄主内的大量种群和高度遗传多样性以及寄主之间的传播瓶颈促进了IBV的快速进化。宿主内的遗传多样性主要通过突变产生,包括取代,插入和缺失。病毒RNA依赖的RNA聚合酶的高错误率和有限的证明读取能力以及重组都导致突变。重组还通过重组现有的变体产生新的单倍型多样性。禽冠状病毒IBV的快速进化使这种病毒的诊断和控制极为困难,而且也使它成为研究病毒遗传多样性和冠状病毒在其天然宿主中出现的机制的出色模型系统。 (C)2012 Elsevier B.V.保留所有权利。

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