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Sequence capture using AFLP‐generated baits: A cost‐effective method for high‐throughput phylogenetic and phylogeographic analysis

机译:使用AFLP诱饵捕获序列:高通量系统发育和系统地理分析的一种经济高效的方法

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摘要

Target sequence capture is an efficient technique to enrich specific genomic regions for high‐throughput sequencing in ecological and evolutionary studies. In recent years, many sequence capture approaches have been proposed, but most of them rely on commercial synthetic baits which make the experiment expensive. Here, we present a novel sequence capture approach called AFLP‐based genome sequence capture (AFLP Capture). This method uses the AFLP (amplified fragment length polymorphism) technique to generate homemade capture baits without the need for prior genome information, thus is applicable to any organisms. In this approach, biotinylated AFLP fragments representing a random fraction of the genome are used as baits to capture the homologous fragments from genomic shotgun sequencing libraries. In a trial study, by using AFLP Capture, we successfully obtained 511 orthologous loci (>700,000 bp in total length) from 11 Odorrana species and more than 100,000 single nucleotide polymorphisms (SNPs) in four analyzed individuals of an Odorrana species. This result shows that our method can be used to address questions of various evolutionary depths (from interspecies level to intraspecies level). We also discuss the flexibility in bait preparation and how the sequencing data are analyzed. In summary, AFLP Capture is a rapid and flexible tool and can significantly reduce the experimental cost for phylogenetic studies that require analyzing genome‐scale data (hundreds or thousands of loci).
机译:目标序列捕获是一种丰富的特定基因组区域的有效技术,可用于生态学和进化研究中的高通量测序。近年来,已经提出了许多序列捕获方法,但是它们中的大多数依赖于商业合成诱饵,这使得实验昂贵。在这里,我们介绍了一种新颖的序列捕获方法,称为基于AFLP的基因组序列捕获(AFLP Capture)。该方法使用AFLP(扩增的片段长度多态性)技术来生成自制的捕获诱饵,而无需事先获得基因组信息,因此适用于任何生物。在这种方法中,代表基因组随机部分的生物素化AFLP片段被用作诱饵,以捕获来自基因组shot弹枪测序文库的同源片段。在一项试验研究中,通过使用AFLP Capture,我们成功地从11种Odorrana物种中获得了511个直系同源位点(总长度> 700,000 bp),并在四个分析过的Odorrana物种中成功地获得了100,000多个单核苷酸多态性(SNP)。该结果表明,我们的方法可用于解决各种进化深度的问题(从种间水平到种内水平)。我们还将讨论诱饵制备的灵活性以及如何分析测序数据。总之,AFLP Capture是一种快速而灵活的工具,可以显着降低需要分析基因组规模数据(数百个或数千个基因座)的系统发育研究的实验成本。

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