Kim Min-Soo, Whon Tae Woong, Bae Jin-Woo
Department of Life and Nanopharmaceutical Science and Department of Biology, Kyung Hee University, Seoul 130-701, Korea.
Genomics Inform. 2013 Sep;11(3):121-8. doi: 10.5808/GI.2013.11.3.121. Epub 2013 Sep 30.
The introduction of metagenomics into the field of virology has facilitated the exploration of viral communities in various natural habitats. Understanding the viral ecology of a variety of sample types throughout the biosphere is important per se, but it also has potential applications in clinical and diagnostic virology. However, the procedures used by viral metagenomics may produce technical errors, such as amplification bias, while public viral databases are very limited, which may hamper the determination of the viral diversity in samples. This review considers the current state of viral metagenomics, based on examples from Korean viral metagenomic studies-i.e., rice paddy soil, fermented foods, human gut, seawater, and the near-surface atmosphere. Viral metagenomics has become widespread due to various methodological developments, and much attention has been focused on studies that consider the intrinsic role of viruses that interact with their hosts.
宏基因组学引入病毒学领域促进了对各种自然栖息地中病毒群落的探索。了解整个生物圈中各种样本类型的病毒生态学本身就很重要,而且在临床和诊断病毒学中也有潜在应用。然而,病毒宏基因组学所使用的程序可能会产生技术误差,如扩增偏差,而公共病毒数据库非常有限,这可能会妨碍样本中病毒多样性的确定。本综述基于韩国病毒宏基因组学研究的实例——即稻田土壤、发酵食品、人体肠道、海水和近地表大气,探讨了病毒宏基因组学的现状。由于各种方法学的发展,病毒宏基因组学已广泛应用,并且很多注意力都集中在考虑病毒与其宿主相互作用的内在作用的研究上。