Application of next-generation sequencing in the detection of low-abundance mutations.

Q3 Medicine 遗传 Pub Date : 2024-02-20 DOI:10.16288/j.yczz.23-309
Yang Luan, Xin-Yue You, Jin Yang
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Abstract

Mutation accumulation in somatic cells contributes to cancer development, aging and many non-malignant diseases. The true mutation frequency in normal cells is extremely low, which presents a challenge in detecting these mutations at such low frequencies. The emergence of next-generation sequencing (NGS) technology enables direct detection of rare mutations across the entire genome of any species. This breakthrough overcomes numerous limitations of traditional mutation detection techniques that rely on specific detection models and sites. However, conventional NGS is limited in its application for detecting low-frequency mutations due to its high sequencing error rate. To address this challenge, high-accuracy NGS sequencing techniques based on molecular consensus sequencing strategies have been developed. These techniques have the ability to correct sequencing errors, resulting in error rates lower than 10-7, are expected to serve as effective tools for low-frequency mutation detection. Error-corrected NGS (ecNGS) techniques hold great potential in various areas, including safety evaluation and research on environmental mutagens, risk assessment of cell and gene therapy drugs, population health risk monitoring, and fundamental research in life sciences. This review highlights a comprehensive review of the research progress in low-frequency mutation detection techniques based on NGS, and provides a glimpse into their potential applications. It also offers an outlook on the potential applications of these techniques, thereby providing valuable insights for further development, research, and application of this technology in relevant fields.

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应用新一代测序技术检测低丰度突变。
体细胞中突变的积累是癌症发展、衰老和许多非恶性疾病的诱因。正常细胞中的真实突变频率极低,这给检测这些低频突变带来了挑战。下一代测序(NGS)技术的出现,可以直接检测任何物种整个基因组中的罕见突变。这一突破克服了传统突变检测技术依赖于特定检测模型和位点的诸多局限性。然而,由于测序错误率较高,传统 NGS 在检测低频突变方面的应用受到了限制。为应对这一挑战,基于分子共识测序策略的高精度 NGS 测序技术应运而生。这些技术能够纠正测序错误,使错误率低于 10-7,有望成为低频突变检测的有效工具。错误校正 NGS(ecNGS)技术在多个领域具有巨大潜力,包括环境诱变剂的安全评估和研究、细胞和基因治疗药物的风险评估、人群健康风险监测以及生命科学的基础研究。本综述全面回顾了基于 NGS 的低频突变检测技术的研究进展,并对其潜在应用进行了展望。它还对这些技术的潜在应用进行了展望,从而为该技术在相关领域的进一步开发、研究和应用提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
遗传
遗传 Medicine-Medicine (all)
CiteScore
2.50
自引率
0.00%
发文量
6699
期刊介绍: Hereditas is a national academic journal sponsored by the Institute of Genetics and Developmental Biology of the Chinese Academy of Sciences and the Chinese Society of Genetics and published by Science Press. It is a Chinese core journal and a Chinese high-quality scientific journal. The journal mainly publishes innovative research papers in the fields of genetics, genomics, cell biology, developmental biology, biological evolution, genetic engineering and biotechnology; new technologies and new methods; monographs and reviews on hot issues in the discipline; academic debates and discussions; experience in genetics teaching; introductions to famous geneticists at home and abroad; genetic counseling; information on academic conferences at home and abroad, etc. Main columns: review, frontier focus, research report, technology and method, resources and platform, experimental operation guide, genetic resources, genetics teaching, scientific news, etc.
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