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NoDe: a fast error-correction algorithm for pyrosequencing amplicon reads

机译:NoDe:用于焦磷酸测序扩增子读取的快速错误校正算法

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摘要

BackgroundThe popularity of new sequencing technologies has led to an explosion of possible applications, including new approaches in biodiversity studies. However each of these sequencing technologies suffers from sequencing errors originating from different factors. For 16S rRNA metagenomics studies, the 454 pyrosequencing technology is one of the most frequently used platforms, but sequencing errors still lead to important data analysis issues (e.g. in clustering in taxonomic units and biodiversity estimation). Moreover, retaining a higher portion of the sequencing data by preserving as much of the read length as possible while maintaining the error rate within an acceptable range, will have important consequences at the level of taxonomic precision.
机译:背景技术新测序技术的普及导致可能的应用爆炸,包括生物多样性研究中的新方法。然而,这些测序技术中的每一种都遭受源自不同因素的测序错误。对于16S rRNA宏基因组学研究,454焦磷酸测序技术是最常用的平台之一,但是测序错误仍然会导致重要的数据分析问题(例如,在分类单位和生物多样性评估中的聚类)。此外,通过在保持错误率在可接受范围内的同时保留尽可能多的读取长度来保留较高比例的测序数据,将对分类精度产生重要影响。

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