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Characterising chromosome rearrangements: recent technical advances in molecular cytogenetics

机译:表征染色体重排:分子细胞遗传学的最新技术进展

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摘要

Genomic rearrangements can result in losses, amplifications, translocations and inversions of DNA fragments thereby modifying genome architecture, and potentially having clinical consequences. Many genomic disorders caused by structural variation have initially been uncovered by early cytogenetic methods. The last decade has seen significant progression in molecular cytogenetic techniques, allowing rapid and precise detection of structural rearrangements on a whole-genome scale. The high resolution attainable with these recently developed techniques has also uncovered the role of structural variants in normal genetic variation alongside single-nucleotide polymorphisms (SNPs). We describe how array-based comparative genomic hybridisation, SNP arrays, array painting and next-generation sequencing analytical methods (read depth, read pair and split read) allow the extensive characterisation of chromosome rearrangements in human genomes.
机译:基因组重排可导致DNA片段的丢失,扩增,易位和倒位,从而改变基因组结构,并可能产生临床后果。最初的细胞遗传学方法最初发现了许多由结构变异引起的基因组疾病。在过去的十年中,分子细胞遗传学技术取得了重大进展,可以在全基因组规模上快速准确地检测结构重排。这些最新开发的技术可实现的高分辨率还揭示了结构变异体与单核苷酸多态性(SNP)一起在正常遗传变异中的作用。我们描述了基于阵列的比较基因组杂交,SNP阵列,阵列绘画和下一代测序分析方法(读取深度,读取对和拆分读取)如何允许人类基因组中染色体重排的广泛表征。

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