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i-rDNA: alignment-free algorithm for rapid in silico detection of ribosomal gene fragments from metagenomic sequence data sets

机译:i-rDNA:从比色基因组序列数据集中快速计算机模拟核糖体基因片段的免比对算法

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摘要

BackgroundObtaining accurate estimates of microbial diversity using rDNA profiling is the first step in most metagenomics projects. Consequently, most metagenomic projects spend considerable amounts of time, money and manpower for experimentally cloning, amplifying and sequencing the rDNA content in a metagenomic sample. In the second step, the entire genomic content of the metagenome is extracted, sequenced and analyzed. Since DNA sequences obtained in this second step also contain rDNA fragments, rapid in silico identification of these rDNA fragments would drastically reduce the cost, time and effort of current metagenomic projects by entirely bypassing the experimental steps of primer based rDNA amplification, cloning and sequencing. In this study, we present an algorithm called i-rDNA that can facilitate the rapid detection of 16S rDNA fragments from amongst millions of sequences in metagenomic data sets with high detection sensitivity.
机译:背景技术使用rDNA分析技术获得准确的微生物多样性估算值是大多数宏基因组学项目的第一步。因此,大多数宏基因组学项目花费大量时间,金钱和人力来进行实验性克隆,扩增和测序宏基因组学样品中的rDNA含量。在第二步中,提取,测序和分析元基因组的整个基因组内容。由于在第二步中获得的DNA序列也包含rDNA片段,因此通过对这些rDNA片段进行计算机快速鉴定,可以完全绕过基于引物的rDNA扩增,克隆和测序的实验步骤,从而大大降低当前宏基因组学项目的成本,时间和精力。在这项研究中,我们提出了一种称为i-rDNA的算法,该算法可以以高检测灵敏度从宏基因组数据集中的数百万个序列中快速检测16S rDNA片段。

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