首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >High-throughput multiplex sequencing to discover copy number variants in Drosophila.
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High-throughput multiplex sequencing to discover copy number variants in Drosophila.

机译:高通量多重测序发现果蝇中的拷贝数变异。

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摘要

Copy number variation (CNV) contributes in phenotypically relevant ways to the genetic variability of many organisms. Cost-effective genomewide methods for identifying copy number variation are necessary to elucidate the contribution that these structural variants make to the genomes of model organisms. We have developed a novel approach for the identification of copy number variation by next generation sequencing. As a proof of concept our method has been applied to map the deletions of three Drosophila deficiency strains. We demonstrate that low sequence coverage is sufficient for identifying and mapping large deletions at kilobase resolution, suggesting that data generated from high-throughput sequencing experiments are sufficient for simultaneously analyzing many strains. Genomic DNA from two Drosophila deficiency stocks was barcoded and sequenced in multiplex, and the breakpoints associated with each deletion were successfully identified. The approach we describe is immediately applicable to the systematic exploration of copy number variation in model organisms and humans.
机译:拷贝数变异(CNV)以表型相关的方式促进了许多生物的遗传变异。鉴定拷贝数变异的经济有效的全基因组方法对于阐明这些结构变异对模型生物的基因组的贡献是必要的。我们已经开发出一种通过下一代测序鉴定拷贝数变异的新颖方法。作为概念的证明,我们的方法已应用于定位三个果蝇缺乏菌株的缺失。我们证明,低序列覆盖率足以识别和定位千碱基分辨率的大缺失,这表明从高通量测序实验生成的数据足以同时分析许多菌株。对来自两个果蝇缺乏储备的基因组DNA进行条形码编码,并进行多重测序,并成功鉴定了与每个缺失相关的断点。我们描述的方法可立即应用于模型生物和人类中拷贝数变异的系统探索。

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