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首页> 外文期刊>BMC Microbiology >Development of loop-mediated isothermal amplification assay for specific and rapid detection of differential goat Pox virus and Sheep Pox virus
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Development of loop-mediated isothermal amplification assay for specific and rapid detection of differential goat Pox virus and Sheep Pox virus

机译:环介导的等温扩增测定技术的开发,用于特异性和快速检测差异山羊痘病毒和绵羊痘病毒

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Background Capripox viruses are economically important pathogens in goat and sheep producing areas of the world, with specific focus on goat pox virus (GTPV), sheep pox virus (SPPV) and the Lumpy Skin Disease virus (LSDV). Clinically, sheep pox and goat pox have the same symptoms and cannot be distinguished serologically. This presents a real need for a rapid, inexpensive, and easy to operate and maintain genotyping tool to facilitate accurate disease diagnosis and surveillance for better management of Capripox outbreaks. Results A LAMP method was developed for the specific differential detection of GTPV and SPPV using three sets of LAMP primers designed on the basis of ITR sequences. Reactions were performed at 62°C for either 45 or 60?min, and specificity confirmed by successful differential detection of several GTPV and SPPV isolates. No cross reactivity with Orf virus, foot-and-mouth disease virus (FMDV), A. marginale Lushi isolate, Mycoplasma mycoides subsp. capri, Chlamydophila psittaci, Theileria ovis, T. luwenshuni, T. uilenbergi or Babesia sp was noted. RFLP-PCR analysis of 135 preserved epidemic materials revealed 48 samples infected with goat pox and 87 infected with sheep pox, with LAMP test results showing a positive detection for all samples. When utilizing GTPV and SPPV genomic DNA, the universal LAMP primers (GSPV) and GTPV LAMP primers displayed a 100% detection rate; while the SPPV LAMP detection rate was 98.8%, consistent with the laboratory tested results. Conclusions In summary, the three sets of LAMP primers when combined provide an analytically robust method able to fully distinguish between GTPV and SPPV. The presented LAMP method provides a specific, sensitive and rapid diagnostic tool for the distinction of GTPV and SPPV infections, with the potential to be standardized as a detection method for Capripox viruses in endemic areas.
机译:背景技术Capripox病毒是世界上山羊和绵羊产区的重要经济病原体,特别关注山羊痘病毒(GTPV),绵羊痘病毒(SPPV)和块状皮肤病病毒(LSDV)。在临床上,绵羊痘和山羊痘具有相同的症状,无法从血清学上加以区分。这确实需要快速,廉价,易于操作和维护的基因分型工具,以促进准确的疾病诊断和监测,以更好地管理Capripox爆发。结果开发了一种LAMP方法,该方法使用了基于ITR序列设计的三组LAMP引物,用于GTPV和SPPV的特异性差异检测。反应在62°C下进行45或60?min,并通过成功地对几种GTPV和SPPV分离株进行成功的差异检测来确认特异性。与Orf病毒,口蹄疫病毒(FMDV),A.marginale Lushi分离株,Mycoplasma mycoides亚种无交叉反应。卡普里岛,嗜衣藻,泰勒斯羊,T. luwenshuni,T.uilenbergi或巴贝斯虫。对135个保存的流行病材料进行RFLP-PCR分析后,发现48个感染了山羊痘的样本和87个感染了绵羊痘的样本,而LAMP测试结果显示所有样本均呈阳性。当使用GTPV和SPPV基因组DNA时,通用LAMP引物(GSPV)和GTPV LAMP引物显示出100%的检测率。 SPPV LAMP的检出率为98.8%,与实验室检测结果一致。结论总而言之,三组LAMP引物结合使用时提供了一种分析稳健的方法,能够完全区分GTPV和SPPV。提出的LAMP方法为区分GTPV和SPPV感染提供了一种特异性,灵敏和快速的诊断工具,并有可能被标准化为在流行地区对Capripox病毒的检测方法。

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