生物
霰弹枪测序
多路复用
计算生物学
杂交测序
DNA测序
猎枪
数字聚合酶链反应
古代DNA
DNA
遗传学
多重位移放大
焦测序
核酸
聚合酶链反应
DNA提取
基因
DNA测序器
人口
人口学
社会学
作者
Balaji Sundararaman,Alisa O. Vershinina,Samantha N. Hershauer,Joshua D. Kapp,Shelby Dunn,Beth Shapiro,Richard E. Green
摘要
Hybridization capture approaches allow targeted high-throughput sequencing analysis at reduced costs compared to shotgun sequencing. Hybridization capture is particularly useful in analyses of genomic data from ancient, environmental, and forensic samples, where target content is low, DNA is fragmented and multiplex PCR or other targeted approaches often fail. Here, we describe a DNA bait synthesis approach for hybridization capture that we call Circular Nucleic acid Enrichment Reagent, or CNER (pronounced 'snare'). The CNER method uses rolling-circle amplification followed by restriction digestion to discretize microgram quantities of hybridization probes. We demonstrate the utility of the CNER method by generating probes for a panel of 23 771 known sites of single nucleotide polymorphism in the horse genome. Using these probes, we capture and sequence from a panel of ten ancient horse DNA libraries, comparing CNER capture efficiency to a commercially available approach. With about one million read pairs per sample, CNERs captured more targets (90.5% versus 66.5%) at greater mean depth than an alternative commercial approach.
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