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Tumour virology in the era of high-throughput genomics

机译:高通量基因组学时代的肿瘤病毒学

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摘要

With the advent of massively parallel sequencing, oncogenic viruses in tumours can now be detected in an unbiased and comprehensive manner. Additionally, new viruses or strains can be discovered based on sequence similarity with known viruses. Using this approach, the causative agent for Merkel cell carcinoma was identified. Subsequent studies using data from large collections of tumours have confirmed models built during decades of hypothesis-driven and low-throughput research, and a more detailed and comprehensive description of virus-tumour associations have emerged. Notably, large cohorts and high sequencing depth, in combination with newly developed bioinformatical techniques, have made it possible to rule out several suggested virus-tumour associations with a high degree of confidence. In this review we discuss possibilities, limitations and insights gained from using massively parallel sequencing to characterize tumours with viral content, with emphasis on detection of viral sequences and genomic integration events.
机译:随着大规模平行测序的出现,现在可以以无偏见和综合的方式检测肿瘤中的致癌病毒。另外,可以基于与已知病毒的序列相似性来发现新的病毒或菌株。使用这种方法,鉴定了Merkel细胞癌的致病剂。随后使用来自大量肿瘤的数据的研究已经确认了在几十年的假设驱动和低通量研究中建造的模型,并且出现了对病毒肿瘤协会的更详细和综合描述。值得注意的是,大型群组和高测序深度与新开发的生物信息技术相结合,使得可以排除几种建议的病毒肿瘤关联,其具有高度的信心。在本次综述中,我们讨论使用大规模平行测序来表征具有病毒含量的肿瘤的可能性,限制和见解,重点是检测病毒序列和基因组集成事件。

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