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Detection and interpretation of genomic structural variation in health and disease

机译:检测和解释健康和疾病中的基因组结构变异

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Recent technological advances in the detection of genomic structural variation have revolutionized the field of medical genetics. Genome-wide screening for copy-number variants in routine molecular diagnostics unveiled the presence of an unforeseen amount of structural variation in the genome. Owing to the massive amount of patients analyzed, the analysis of the resulting data became exponentially more complex. Simultaneously, novel insights in the impact of structural variation on the phenotype forced the re-evaluation of the pathogenicity of copy-number variations in more complex inheritance models. As a consequence, the challenge of today's genetics shifted from the mere detection of structural variation to the correct annotation and interpretation of the data. Various databases and data mining tools are available to help in the interpretation of the data, but making decisions on the pathogeniticy of the variation is still challenging. This review provides an overview of current laboratory techniques to detect structural variation, options to analyze and annotate data from genome-wide methods and caveats to take into account in interpretation of results.
机译:检测基因组结构变异的最新技术进步彻底改变了医学遗传学领域。在常规分子诊断中全基因组范围内拷贝数变异的筛选揭示了基因组中存在无法预料的结构变异。由于分析了大量患者,因此对结果数据的分析变得越来越复杂。同时,关于结构变异对表型影响的新颖见解迫使人们在更复杂的遗传模型中重新评估拷贝数变异的致病性。结果,当今遗传学的挑战从仅仅检测结构变异转变为正确注释和解释数据。可以使用各种数据库和数据挖掘工具来帮助解释数据,但是要做出有关变异的致病性的决策仍然很困难。这篇综述概述了检测结构变异的当前实验室技术,分析和注释全基因组方法数据的选项以及在解释结果时要注意的注意事项。

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