基于血凝素和神经氨酸酶基因分析的2009年甲型H1N1流感基因组稳定性

The Open Virology Journal Pub Date : 2012-01-01 Epub Date: 2012-04-26 DOI:10.2174/1874357901206010059
Emilio E Espínola
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引用次数: 10

摘要

2009年出现的甲型流感病毒(H1N1)是继1918年、1957年和1968年之后的第四次大流行。这种新变种是由猪流感、禽流感和人类流感的基因组片段三重重组形成的。本研究的目的是分析血球凝集素(n=2038)和神经氨酸酶(n=1273)基因序列,以评估2009-2010年流行毒株之间的多样性程度,估计这些基因在大流行阶段是通过阳性、阴性还是中性的进化选择模型进化,并分析全球范围内检测到的能够增强病毒性能(如传播性或耐药性)的重要氨基酸突变的百分比。公共卫生当局的持续监测对于监测新的流感变体的出现至关重要,特别是在猪和鸟类等动物宿主中,以防止具有大流行潜力的病毒在动物-人类之间的潜在传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Genome Stability of Pandemic Influenza A (H1N1) 2009 Based on Analysis of Hemagglutinin and Neuraminidase Genes.

Influenza A virus (H1N1), which arose in 2009, constituted the fourth pandemic after the cases of 1918, 1957, and 1968. This new variant was formed by a triple reassortment, with genomic segments from swine, avian, and human influenza origins. The objective of this study was to analyze sequences of hemagglutinin (n=2038) and neuraminidase (n=1273) genes, in order to assess the extent of diversity among circulating 2009-2010 strains, estimate if these genes evolved through positive, negative, or neutral selection models of evolution during the pandemic phase, and analyze the worldwide percentage of detection of important amino acid mutations that could enhance the viral performance, such as transmissibility or resistance to drugs. A continuous surveillance by public health authorities will be critical to monitor the appearance of new influenza variants, especially in animal reservoirs such as swine and birds, in order to prevent the potential animal-human transmission of viruses with pandemic potential.

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