Univ Brest, Inserm, EFS, UMR 1078, GGB, Brest, France.
Service de Génétique Médicale et Biologie de la Reproduction, CHU de Brest, Brest, France.
Eur J Hum Genet. 2024 Sep;32(9):1037-1044. doi: 10.1038/s41431-024-01666-z. Epub 2024 Jul 10.
In this study, we explore the landscape of short tandem repeats (STRs) within the human genome through the lens of evolving technologies to detect genomic variations. STRs, which encompass approximately 3% of our genomic DNA, are crucial for understanding human genetic diversity, disease mechanisms, and evolutionary biology. The advent of high-throughput sequencing methods has revolutionized our ability to accurately map and analyze STRs, highlighting their significance in genetic disorders, forensic science, and population genetics. We review the current available methodologies for STR analysis, the challenges in interpreting STR variations across different populations, and the implications of STRs in medical genetics. Our findings underscore the urgent need for comprehensive STR databases that reflect the genetic diversity of global populations, facilitating the interpretation of STR data in clinical diagnostics, genetic research, and forensic applications. This work sets the stage for future studies aimed at harnessing STR variations to elucidate complex genetic traits and diseases, reinforcing the importance of integrating STRs into genetic research and clinical practice.
在这项研究中,我们通过不断发展的技术来探索人类基因组中的短串联重复序列(STRs)景观,以检测基因组变异。STRs 约占人类基因组 DNA 的 3%,对于理解人类遗传多样性、疾病机制和进化生物学至关重要。高通量测序方法的出现彻底改变了我们准确绘制和分析 STRs 的能力,凸显了它们在遗传疾病、法医学和群体遗传学中的重要性。我们回顾了当前用于 STR 分析的方法,讨论了在不同人群中解释 STR 变异所面临的挑战,以及 STRs 在医学遗传学中的意义。我们的研究结果强调了迫切需要建立全面的 STR 数据库,以反映全球人群的遗传多样性,从而促进 STR 数据在临床诊断、遗传研究和法医学应用中的解释。这项工作为未来旨在利用 STR 变异来阐明复杂遗传特征和疾病的研究奠定了基础,同时也强调了将 STRs 纳入遗传研究和临床实践的重要性。