Next generation sequencing (NGS) as a multipurpose method for detection and differentiation of plant viruses

Q4 Agricultural and Biological Sciences
A. Kaczmarek, K. Treder
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引用次数: 0

Abstract

This paper describes the application of next generation sequencing (NGS) in plant virus research. Although NGS has not been routinely used yet, it is increasingly adopted in diagnostics and genomics of phytopathogens. NGS technics enable the simultaneous detection of multiple viruses present in infected material. This makes it possible not only to determine which viruses are present in a single sample but also to determine their concentration and genetic diversity. The simultaneous identification of many viruses, the possibility of early detection of disease outbreaks as well as tracking and monitoring of epidemic development, make NGS a universal research tool that enables not only the detection but also the understanding of molecular mechanisms allowing viruses to adapt to environmental changes (host plant genotype, vector, presence of other pathogens).
下一代测序(NGS)作为一种多用途的植物病毒检测和分化方法
本文介绍了新一代测序技术在植物病毒研究中的应用。虽然NGS尚未被常规使用,但它在植物病原体的诊断和基因组学中被越来越多地采用。NGS技术能够同时检测感染材料中存在的多种病毒。这使得不仅可以确定单个样本中存在哪些病毒,而且可以确定它们的浓度和遗传多样性。许多病毒的同时鉴定,疾病暴发的早期发现以及流行病发展的跟踪和监测的可能性,使NGS成为一个通用的研究工具,不仅能够检测,而且能够理解分子机制,使病毒适应环境变化(宿主植物基因型,载体,其他病原体的存在)。
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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来源期刊
Progress in Plant Protection
Progress in Plant Protection Environmental Science-Pollution
CiteScore
0.60
自引率
0.00%
发文量
10
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