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首页> 外文期刊>Avian Diseases >Modified H5 real-time reverse transcriptase-PCR oligonucleotides for detection of divergent avian influenza H5N1 viruses in Egypt.
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Modified H5 real-time reverse transcriptase-PCR oligonucleotides for detection of divergent avian influenza H5N1 viruses in Egypt.

机译:修饰的H5实时逆转录酶PCR寡核苷酸,用于在埃及检测不同的禽流感H5N1病毒。

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The efforts exerted to prevent circulation of highly pathogenic avian influenza (HPAI) H5N1 virus in birds are the best way to prevent the emergence of a new virus subtype with pandemic potential. Despite the blanket vaccination strategy against HPAI H5N1 in Egypt, continuous circulation of the virus in poultry has increased since late 2007 as a result of the presence of genetic and antigenic distinct variant strains that have escaped during the immune response of vaccinated birds. Although the suspected poultry flocks have had signs and lesions commonly seen in HPAI H5N1-infected birds, escape of variant strains from detection by real-time reverse transcriptase-PCR (RRT-PCR) was observed. Sequence analysis of these variants revealed multiple single nucleotide substitutions in the primers and probe target sequences of the H5 gene by real-time RT-PCR. This study describes the results of RRT-PCR, modified from an existing protocol with regard to the detection of the partial H5 gene segment of the Egyptian H5N1 divergent viruses and applied to nationwide surveillance. The modified RRT-PCR assay was more sensitive than the original one in the detection of Egyptian isolates, with 104% amplification efficiency. Sixty-one field samples were found to be positive in our assay, but only 51 samples tested positive by the original protocol and were more sensitive than matrix gene RRT-PCR detection assay. A detection limit of 10 mean embryo infective dose (EID50) with the updated oligonucleotides primers and probe set was found. For the foreseeable future, mutation of H5N1 viruses and the endemic situation in developing countries require continuous improvement of current diagnostics to aid in the containment of the H5N1 virus in poultry sectors and to lower the threat of influenza virus spread.Digital Object Identifier http://dx.doi.org/10.1637/9412-053110-ResNote.1
机译:防止高致病性禽流感(HPAI)H5N1病毒在鸟类中传播的努力是防止出现具有大流行潜力的新病毒亚型的最佳方法。尽管埃及采取了针对HPAI H5N1的全面疫苗接种策略,但自2007年底以来,由于存在已接种疫苗的禽类的免疫反应中逃脱的遗传和抗原性独特变异株,禽流感病毒在禽类中的持续传播有所增加。尽管怀疑的禽群具有在感染HPAI H5N1的禽鸟中常见的体征和病变,但观察到变异株逃脱了通过实时逆转录酶PCR(RRT-PCR)的检测。这些变体的序列分析显示,通过实时RT-PCR,H5基因的引物和探针靶序列中有多个单核苷酸取代。这项研究描述了RRT-PCR的结果,该结果从现有协议进行了修改,以检测埃及H5N1趋异病毒的部分H5基因片段,并应用于全国范围的监视。改进的RRT-PCR检测方法在检测埃及分离株方面比原始方法灵敏,扩增效率为104%。在我们的测定中发现了61个现场样品为阳性,但按照原始方案只有51个样品被测定为阳性,并且比基质基因RRT-PCR检测测定更敏感。发现最新的寡核苷酸引物和探针组的检出限为10个平均胚胎感染剂量(EID 50 )。在可预见的将来,H5N1病毒的突变和发展中国家的流行状况需要不断改进当前的诊断方法,以帮助禽类部门控制H5N1病毒并降低流感病毒传播的威胁。 /dx.doi.org/10.1637/9412-053110-ResNote.1

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