Mardis Elaine R, Wilson Richard K
Rasmussen Institute for Genomic Medicine, Nationwide Children's Hospital, Columbus, OH, USA.
Department of Paediatrics, The Ohio State University College of Medicine, Columbus, OH, USA.
Nat Rev Genet. 2025 Aug 15. doi: 10.1038/s41576-025-00884-5.
Accelerated discovery in biomedical science is typically punctuated by technological advances, and the past decade has been exemplary regarding breakthroughs in our genomic understanding of human biology in health and disease. This phenomenon was facilitated by the availability of a human genome reference sequence and the development and continuous improvement of next-generation and single-molecule sequencing technologies, accompanied by advances in computational analytics. These fundamental tools have driven the emergence of innovative methods that capture different aspects of human cell biology, with exquisite detail genome wide, in a sequence-based readout. The resulting expansion of knowledge has poised these approaches for clinical adoption, fulfilling the original intention of decoding the human genome and ushering in the era of genomic medicine.
生物医学科学领域的加速发现通常以技术进步为标志,过去十年在我们对人类健康与疾病生物学的基因组理解方面取得的突破堪称典范。人类基因组参考序列的可得性、下一代测序技术和单分子测序技术的发展与持续改进,以及计算分析方面的进展,推动了这一现象的出现。这些基础工具催生了创新方法,能够在全基因组范围内以基于序列的读数精确捕捉人类细胞生物学的不同方面。由此带来的知识扩展使这些方法有望应用于临床,实现了解码人类基因组的初衷,迎来了基因组医学时代。