DNA测序
桑格测序
纳米孔测序
大规模并行测序
计算生物学
背景(考古学)
霰弹枪测序
基因组学
生物
离子半导体测序
单细胞测序
计算机科学
外显子组测序
数据科学
基因组
遗传学
DNA
突变
基因
古生物学
作者
Kishore R. Kumar,Mark J. Cowley,Ryan L. Davis
标识
DOI:10.1055/s-0039-1688446
摘要
Abstract Genetic sequencing technologies are evolving at a rapid pace with major implications for research and clinical practice. In this review, the authors provide an updated overview of next-generation sequencing (NGS) and emerging methodologies. NGS has tremendously improved sequencing output while being more time and cost-efficient in comparison to Sanger sequencing. The authors describe short-read sequencing approaches, such as sequencing by synthesis, ion semiconductor sequencing, and nanoball sequencing. Third-generation long-read sequencing now promises to overcome many of the limitations of short-read sequencing, such as the ability to reliably resolve repeat sequences and large genomic rearrangements. By combining complementary methods with massively parallel DNA sequencing, a greater insight into the biological context of disease mechanisms is now possible. Emerging methodologies, such as advances in nanopore technology, in situ nucleic acid sequencing, and microscopy-based sequencing, will continue the rapid evolution of this area. These new technologies hold many potential applications for hematological disorders, with the promise of precision and personalized medical care in the future.
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