Laboratory of Recombinant Vaccines, Intercollegiate Faculty of Biotechnology of University of Gdansk and Medical University of Gdansk, University of Gdansk, 80-307 Gdansk, Poland.
Department of Biochemistry and Microbiology, Rhodes University, P.O. Box 94, Grahamstown 6140, South Africa.
Viruses. 2019 Jan 29;11(2):115. doi: 10.3390/v11020115.
is a highly diverse family of rod-shaped viruses with double-stranded DNA. To date, almost 100 species have had their complete genomic sequences deposited in the GenBank database, a quarter of which comprises granuloviruses (GVs). Many of the genomes are sequenced using next-generation sequencing, which is currently considered the best method for characterizing new species, but it is time-consuming and expensive. Baculoviruses form a safe alternative to overused chemical pesticides and therefore there is a constant need for identifying new species that can be active components of novel biological insecticides. In this study, we have described a fast and reliable method for the detection of new and differentiation of previously analyzed granulovirus species based on a real-time polymerase chain reaction (PCR) technique with melting point curve analysis. The sequences of highly conserved baculovirus genes, such as and and ( and ), derived from GVs available to date have been analyzed and used for degenerate primer design. The developed method was tested on a representative group of eight betabaculoviruses with comparisons of melting temperatures to allow for quick and preliminary granulovirus detection. The proposed real-time PCR procedure may be a very useful tool as an easily accessible screening method in a majority of laboratories.
是一类具有双链 DNA 的杆状病毒,高度多样化。迄今为止,已有近 100 种病毒的完整基因组序列被存入 GenBank 数据库,其中四分之一为颗粒体病毒(GVs)。许多基因组序列是使用下一代测序技术(NGS)测序的,该技术目前被认为是鉴定新物种的最佳方法,但耗时且昂贵。杆状病毒是过度使用的化学农药的安全替代品,因此,不断需要鉴定新的物种,使其成为新型生物杀虫剂的有效成分。在这项研究中,我们描述了一种快速可靠的方法,用于基于实时聚合酶链反应(PCR)技术和熔点曲线分析来检测新的和区分以前分析过的颗粒体病毒物种。对来自目前可用的 GV 的高度保守杆状病毒基因,如 、 和 ( 和 )的序列进行了分析,并用于设计简并引物。该方法在一组具有代表性的 8 种β杆状病毒上进行了测试,比较了熔点,以实现快速初步的颗粒体病毒检测。所提出的实时 PCR 程序可能是一种非常有用的工具,作为大多数实验室中易于获取的筛选方法。