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A new metagenome binning method based on gene uniqueness

机译:一种基于基因唯一性的新型偏粘连胺法

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Background The human gut microbiome contains millions of genes and many undetected bacteria species. Recovering bacterial genomes from large complex metagenomes remains highly challenging, and current binning methods show insufficient recall rates. Objective This study was performed to put forward a new metagenome binning method with promising recall rate and accuracy. Methods We found that more than 85% of the genes could be aligned to only one bacteria species by using strict BLAST parameters (identity > 90% and aligning length > 100 bp). This phenomenon was called "the gene uniqueness", which indicated that the most bacterial genes could be exclusive to the species' taxonomy. In our new metagenome binning method, we could cluster contigs based on gene similarity via a graph model. Any contig shared with same gene under Strict Blast parameters would be clustered into one bin. Results we obtained 1,131 bins and reconstructed the genomes of 12 unknown species for MetaHIT data Our method exhibited a more promising recall rate, faster running speed and lower time complexity than the current methods. Conclusions The present new metagenome binning method based on gene uniqueness had high recall rate and low error, which could be applied to assemble the bacterial genomes efficiently in complex metagenome.
机译:背景技术人体肠道微生物组包含数百万基因和许多未检测到的细菌种类。从大型复杂的偏心蛋白中回收细菌基因组仍然具有高度挑战性,并且电流烧结方法显示出不足的召回率。目的是进行了提出了具有承诺召回率和准确性的新的梅塔蛋白酶分子法。方法发现,超过85%的基因可以通过使用严格的喷射参数(同一性> 90%并对准长度> 100bp)对齐一个细菌种类。这种现象称为“基因唯一性”,表明最细菌基因可能是物种的分类物种。在我们的新的Metagenome Binning方法中,我们可以通过图形模型基于基因相似性聚集Contigs。在严格的BLAST参数下与相同基因共享的任何CONTIG都将被聚集到一个垃圾箱中。结果我们获得了1,131个箱,重建了12个未知物种的Metahit数据的基因组,我们的方法表现出更有前途的召回速率,更快的运行速度和比当前方法更低的时间复杂性。结论本发明的基于基因唯一性的新梅霉菌组合法具有高召回率和低误差,其可应用于复合偏心组中的有效组装细菌基因组。

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