Bernardo Pauline, Albina Emmanuel, Eloit Marc, Roumagnac Philippe
Cirad Centre de coopération internationale en recherche agronomique pour le développement, UMR BGPI biologie et génétique des interactions plante- parasite, 34398 Montpellier Cedex 5, France.
Med Sci (Paris). 2013 May;29(5):501-8. doi: 10.1051/medsci/2013295013. Epub 2013 May 28.
Human, animal and plant viral diseases have greatly benefited from recent metagenomics developments. Viral metagenomics is a culture-independent approach used to investigate the complete viral genetic populations of a sample. During the last decade, metagenomics concepts and techniques that were first used by ecologists progressively spread into the scientific field of viral pathology. The sample, which was first for ecologists a fraction of ecosystem, became for pathologists an organism that hosts millions of microbes and viruses. This new approach, providing without a priori high resolution qualitative and quantitative data on the viral diversity, is now revolutionizing the way pathologists decipher viral diseases. This review describes the very last improvements of the high throughput next generation sequencing methods and discusses the applications of viral metagenomics in viral pathology, including discovery of novel viruses, viral surveillance and diagnostic, large-scale molecular epidemiology, and viral evolution.
人类、动物和植物的病毒性疾病从近期宏基因组学的发展中受益匪浅。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基因群体。在过去十年中,最初由生态学家使用的宏基因组学概念和技术逐渐扩展到病毒病理学的科学领域。样本,对于生态学家来说最初是生态系统的一部分,而对于病理学家而言则变成了一个容纳数百万微生物和病毒的生物体。这种新方法无需先验知识就能提供关于病毒多样性的高分辨率定性和定量数据,正在彻底改变病理学家解读病毒性疾病的方式。本综述描述了高通量下一代测序方法的最新改进,并讨论了病毒宏基因组学在病毒病理学中的应用,包括新型病毒的发现、病毒监测与诊断、大规模分子流行病学以及病毒进化。