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Toward almost closed genomes with GapFiller

机译:使用GapFiller接近封闭的基因组

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De novo?assembly is a commonly used application of next-generation sequencing experiments. The ultimate goal is to puzzle millions of reads into one complete genome, although draft assemblies usually result in a number of gapped scaffold sequences. In this paper we propose an automated strategy, called GapFiller, to reliably close gaps within scaffolds using paired reads. The method shows good results on both bacterial and eukaryotic datasets, allowing only few errors. As a consequence, the amount of additional wetlab work needed to close a genome is drastically reduced. The software is available at?http://www.baseclear.com/bioinformatics-tools/.
机译:从头组装是下一代测序实验的常用应用。最终目标是将数百万个读取结果拼凑成一个完整的基因组,尽管草图装配通常会导致许多空缺的支架序列。在本文中,我们提出了一种称为GapFiller的自动化策略,该方法可以使用配对读取可靠地关闭支架内的缺口。该方法在细菌和真核数据集上均显示出良好的结果,仅产生很少的错误。结果,关闭基因组所需的额外的湿实验室工作量大大减少了。该软件可从http://www.baseclear.com/bioinformatics-tools/获得。

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