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Challenges in studying genomic structural variant formation mechanisms: The short-read dilemma and beyond

机译:研究基因组结构变异形成机制的挑战:短读困境和其他

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摘要

Next-generation sequencing (NGS) technologies have revolutionised the analysis of genomic structural variants (SVs), providing significant insights into SV de novo formation based on analyses of rearrangement breakpoint junctions. The short DNA reads generated by NGS, however, have also created novel obstacles by biasing the ascertainment of SVs, an aspect that we refer to as the ‘short-read dilemma’. For example, recent studies have found that SVs are often complex, with SV formation generating large numbers of breakpoints in a single event (multi-breakpoint SVs) or structurally polymorphic loci having multiple allelic states (multi-allelic SVs). This complexity may be obscured in short reads, unless the data is analysed and interpreted within its wider genomic context. We discuss how novel approaches will help to overcome the short-read dilemma, and how integration of other sources of information, including the structure of chromatin, may help in the future to deepen the understanding of SV formation processes.
机译:下一代测序(NGS)技术彻底改变了基因组结构变异(SVs)的分析方法,从而基于对重排断点的分析,为SV de novo的形成提供了重要的见识。但是,NGS产生的DNA短读也通过偏向于SV的确定而造成了新的障碍,我们将这称为“短读困境”。例如,最近的研究发现,SV通常很复杂,其中SV的形成在单个事件中产生大量的断点(多断裂点SV)或具有多个等位基因状态的结构多态位点(多等位​​基因SV)。短时间读取可能会掩盖这种复杂性,除非在更广泛的基因组范围内分析和解释数据。我们将讨论新颖的方法如何帮助克服短读的困境,以及整合其他信息源(包括染色质的结构)如何在将来有助于加深对SV形成过程的理解。

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