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Codon Usage Methods for Horizontal Gene Transfer Detection Generate an Abundance of False Positive and False Negative Results

机译:水平基因转移检测的密码子使用方法产生大量的假阳性和假阴性结果

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摘要

Bacteria acquire new DNA in a process known as horizontal gene transfer (HGT). To investigate the evolutionary impact of this transfer of DNA, various methods have been developed to detect past HGT events. For example, codon usage-based methods detect the presence of transferred genes by identifying atypical patterns of codon usage. However, some inherited genes exhibit atypical codon usage and some transferred genes have codon usage patterns similar to those of the inherited genes. In this study, we used a comparative phylogenetic approach with Methylobacterium and Caulobacter species to demonstrate that even well-designed codon usage methods fail to detect many HGT events and generate a high rate of false positives (60–75 %) and false negatives (23–61 %). Therefore, we recommend caution when employing codon usage methods to identify transferred genes and suggest that the rapidly increasing availability of bacterial genome sequences makes the phylogenetic approach the method of choice.
机译:细菌通过称为水平基因转移(HGT)的过程获取新的DNA。为了研究这种DNA转移的进化影响,已经开发了多种方法来检测过去的HGT事件。例如,基于密码子使用的方法通过识别密码子使用的非典型模式来检测转移的基因的存在。但是,一些遗传基因表现出非典型的密码子使用,而一些转移的基因具有与遗传基因相似的密码子使用模式。在这项研究中,我们使用了甲基杆菌属和杆状杆菌属的比较系统发育方法来证明,即使设计良好的密码子使用方法也无法检测到许多HGT事件,并且产生很高的假阳性率(60-75%)和假阴性率(23 –61%)。因此,我们建议在采用密码子使用方法来识别转移的基因时要谨慎,并建议细菌基因组序列的迅速增加的可用性使系统发生方法成为首选方法。

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