利用全基因组测序进行人口规模基因组学的国家生物银行项目的经验教训。

Hyeji Lee, Wooheon Kim, Nahyeon Kwon, Chanhee Kim, Sungmin Kim, Joon-Yong An
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引用次数: 0

摘要

利用全基因组测序的大规模国家生物银行项目已成为了解人类遗传变异及其与健康和疾病关系的变革性资源。包括英国生物银行、我们所有人研究计划、新加坡的PRECISE、日本生物银行和韩国国家生物大数据项目在内的这些项目正在产生前所未有的高分辨率基因组数据,这些数据集成了全面的表型、环境和临床信息。本文综述了全球主要基于wgs的国家基因组计划的方法、贡献和挑战。我们首先讨论了国家生物银行倡议的景观,强调了他们在数据收集、参与者招募和表型表征方面的独特方法。然后,我们介绍了能够有效处理和分析大规模WGS数据的最新技术进展,包括变体调用算法的改进、创建多样本vcf的创新方法、优化的数据存储格式和基于云的计算解决方案。这篇综述综合了这些项目的主要发现,特别是在鉴定与复杂疾病相关的表达数量性状位点和罕见变异方面。我们的综述介绍了韩国国家生物大数据项目的最新发现,这些发现提高了我们对韩国和东亚人群中人群特异性遗传变异和罕见疾病的理解。最后,我们讨论了未来的方向和挑战,以最大限度地发挥这些资源对精准医疗和全球卫生公平的影响。这一全面的研究表明,大规模的国家基因组项目正在彻底改变基因研究和医疗保健服务,同时强调继续投资于多样化、特定人群的基因组资源的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lessons from national biobank projects utilizing whole-genome sequencing for population-scale genomics.

Large-scale national biobank projects utilizing whole-genome sequencing have emerged as transformative resources for understanding human genetic variation and its relationship to health and disease. These initiatives, which include the UK Biobank, All of Us Research Program, Singapore's PRECISE, Biobank Japan, and the National Project of Bio-Big Data of Korea, are generating unprecedented volumes of high-resolution genomic data integrated with comprehensive phenotypic, environmental, and clinical information. This review examines the methodologies, contributions, and challenges of major WGS-based national genome projects worldwide. We first discuss the landscape of national biobank initiatives, highlighting their distinct approaches to data collection, participant recruitment, and phenotype characterization. We then introduce recent technological advances that enable efficient processing and analysis of large-scale WGS data, including improvements in variant calling algorithms, innovative methods for creating multi-sample VCFs, optimized data storage formats, and cloud-based computing solutions. The review synthesizes key discoveries from these projects, particularly in identifying expression quantitative trait loci and rare variants associated with complex diseases. Our review introduces the latest findings from the National Project of Bio-Big Data of Korea, which has advanced our understanding of population-specific genetic variation and rare diseases in Korean and East Asian populations. Finally, we discuss future directions and challenges in maximizing the impact of these resources on precision medicine and global health equity. This comprehensive examination demonstrates how large-scale national genome projects are revolutionizing genetic research and healthcare delivery while highlighting the importance of continued investment in diverse, population-specific genomic resources.

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