Long and Accurate: How HiFi Sequencing is Transforming Genomics.

Bo Wang, Peng Jia, Shenghan Gao, Huanhuan Zhao, Gaoyang Zheng, Linfeng Xu, Kai Ye
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Abstract

Recent developments in PacBio high-fidelity (HiFi) sequencing technologies have transformed genomic research, with circular consensus sequencing now achieving 99.9% accuracy for long (up to 25 kb) single-molecule reads. This method circumvents biases intrinsic to amplification-based approaches, enabling thorough analysis of complex genomic regions [including tandem repeats, segmental duplications, ribosomal DNA (rDNA) arrays, and centromeres] as well as direct detection of base modifications, furnishing both sequence and epigenetic data concurrently. This has streamlined a number of tasks including genome assembly, variant detection, and full-length transcript analysis. This review provides a comprehensive overview of the applications and challenges of HiFi sequencing across various fields, including genomics, transcriptomics, and epigenetics. By delineating the evolving landscape of HiFi sequencing in multi-omics research, we highlight its potential to deepen our understanding of genetic mechanisms and to advance precision medicine.

长而准确:高保真测序如何改变基因组学。
PacBio高保真(HiFi)测序技术的最新发展已经改变了基因组研究,循环共识测序现在在长(高达25 kb)单分子读取中达到99.9%的准确性。该方法规避了基于扩增方法固有的偏差,能够对复杂基因组区域(包括串联重复序列、片段复制、核糖体DNA (rDNA)阵列和着丝粒)进行全面分析,并直接检测碱基修饰,同时提供序列和表观遗传数据。这简化了许多任务,包括基因组组装、变异检测和全长转录本分析。本文综述了HiFi测序在多个领域的应用和挑战,包括基因组学、转录组学和表观遗传学。通过描述HiFi测序在多组学研究中的发展前景,我们强调了它在加深我们对遗传机制的理解和推进精准医学方面的潜力。
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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