Resolving the diagnostic odyssey in inherited retinal dystrophies through long-read genome sequencing

Gerardo Fabian-Morales, Vianey Ordoñez-Labastida, William J. Rowell, Christine Lambert, Cairbre Fanslow, Alexander Robertson, Juan C. Zenteno
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Abstract

Background Inherited Retinal Dystrophies (IRDs) are visually disabling monogenic diseases with remarkable genetic and phenotypic heterogeneity. Mutations in more than 300 different genes have been identified as disease causing. Genetic diagnosis of IRDs has been greatly improved thanks to the incorporation of Next Generation Sequencing (NGS) approaches. However, the current IRD molecular diagnosis yield using NGS is approximately 60% and negative cases can be explained by variants that are not usually identified by the widely used short reads-NGS such as structural variants (SVs) or by variants located in uncovered, low complexity, repetitive, highly homologous, or GC-rich regions. Long-read genome sequencing (LR-GS) is an emerging technology that produces 10-20 kb reads and is expected to overcome short-read sequencing limitations in the clinical context, thus improving the diagnostic yield in heterogeneous diseases as IRDs.
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通过长线程基因组测序解决遗传性视网膜营养不良症的诊断难题
背景 遗传性视网膜营养不良症(IRD)是一种视觉致残性单基因疾病,具有显著的遗传和表型异质性。目前已确定有 300 多种不同基因的突变可导致疾病。由于采用了新一代测序(NGS)方法,IRD 的基因诊断得到了极大改善。然而,目前使用 NGS 的 IRD 分子诊断率约为 60%,阴性病例可能是由于结构变异(SV)或位于未发现、低复杂性、重复、高度同源或富含 GC 的区域的变异等广泛使用的短读-NGS 通常无法识别的变异造成的。长读数基因组测序(LR-GS)是一种新兴技术,可产生 10-20 kb 的读数,有望克服短读数测序在临床中的局限性,从而提高 IRD 等异质性疾病的诊断率。
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