Shichiri Yui, Mariya Tasuku, Murase Yuri, Inagaki Hidehito, Kurahashi Hiroki
Division of Molecular Genetics, Center for Medical Science, Fujita Health University, Aichi, Japan.
Department of Obstetrics and Gynecology, Sapporo Medical University School of Medicine, Hokkaido, Japan.
Methods Mol Biol. 2025;2968:249-261. doi: 10.1007/978-1-0716-4750-9_14.
Long-read sequencers are known for their effectiveness in detecting genomic structural variations (SV) and are becoming a standard approach for comprehensive genetic analysis. In preimplantation genetic testing (PGT) for SV carriers, information on breakpoint junctions is required to determine the carrier status in embryo selection. Long-read sequencers are employed for SV cases that are difficult to analyze with conventional cytogenetical methods and the detailed SV junction information they provide yields valuable insights. They can also analyze the single-nucleotide variations (SNVs) that surround SVs and thus provide further information on the carrier status for embryo selection. Despite these advantages of long-read sequencers however, they are prone to inaccuracy and have high testing costs. This review summarizes the advanced applications of long-read sequencers currently in preclinical workups and their integration into PGT. It also presents in-house clinical cases that highlight long-read sequencing in practice and discusses the prospects for this field.
长读长测序仪以其在检测基因组结构变异(SV)方面的有效性而闻名,正成为全面基因分析的标准方法。在针对SV携带者的植入前基因检测(PGT)中,需要断点连接信息来确定胚胎选择中的携带者状态。长读长测序仪用于传统细胞遗传学方法难以分析的SV病例,它们提供的详细SV连接信息能产生有价值的见解。它们还可以分析围绕SV的单核苷酸变异(SNV),从而为胚胎选择提供关于携带者状态的更多信息。然而,尽管长读长测序仪有这些优点,但它们容易出现不准确的情况,并且检测成本很高。本综述总结了长读长测序仪目前在临床前检查中的先进应用及其在PGT中的整合。它还展示了突出长读长测序在实践中的内部临床病例,并讨论了该领域的前景。