Section of Virology, Department of Biomedical Sciences and Veterinary Public Health, Swedish University of Agricultural Sciences, Uppsala, Sweden.
Vet Q. 2011 Sep;31(3):107-14. doi: 10.1080/01652176.2011.604971. Epub 2011 Aug 2.
New diseases continue to emerge in both human and animal populations, and the importance of animals, as reservoirs for viruses that can cause zoonoses are evident. Thus, an increased knowledge of the viral flora in animals, both in healthy and diseased individuals, is important both for animal and human health. Viral metagenomics is a culture-independent approach that is used to investigate the complete viral genetic populations of a sample. This review describes and discusses the different possible steps of a viral metagenomic study utilizing sequence-independent amplification, high-throughput sequencing, and bioinformatics to identify viruses. With this technology, multiple viruses can be detected simultaneously and novel and highly divergent viruses can be discovered and genetically characterized for the first time. This review also briefly discusses the applications of viral metagenomics in veterinary science and lists some of the viruses discovered within this field.
新的疾病继续在人类和动物群体中出现,动物作为能够引起人畜共患病的病毒的储存库的重要性显而易见。因此,增加对健康和患病个体中动物的病毒菌群的了解,对动物和人类的健康都很重要。病毒宏基因组学是一种不依赖培养的方法,用于研究样本中完整的病毒遗传群体。本文描述并讨论了利用无序列依赖性扩增、高通量测序和生物信息学来识别病毒的病毒宏基因组学研究的不同可能步骤。通过这项技术,可以同时检测多种病毒,并首次发现和遗传特征描述新型和高度多样化的病毒。本文还简要讨论了病毒宏基因组学在兽医科学中的应用,并列出了该领域发现的一些病毒。