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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Accuracy and Power of Statistical Methods for Detecting Adaptive Evolution in Protein Coding Sequences and for Identifying Positively Selected Sites
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Accuracy and Power of Statistical Methods for Detecting Adaptive Evolution in Protein Coding Sequences and for Identifying Positively Selected Sites

机译:用于检测蛋白质编码序列中的自适应进化和识别阳性选择位点的统计方法的准确性和功效

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摘要

The parsimony method of [Suzuki and Gojobori (1999)][1] and the maximum likelihood method developed from the work of [Nielsen and Yang (1998)][2] are two widely used methods for detecting positive selection in homologous protein coding sequences. Both methods consider an excess of nonsynonymous (replacement) substitutions as evidence for positive selection. Previously published simulation studies comparing the performance of the two methods show contradictory results. Here we conduct a more thorough simulation study to cover and extend the parameter space used in previous studies. We also reanalyzed an HLA data set that was previously proposed to cause problems when analyzed using the maximum likelihood method. Our new simulations and a reanalysis of the HLA data demonstrate that the maximum likelihood method has good power and accuracy in detecting positive selection over a wide range of parameter values. Previous studies reporting poor performance of the method appear to be due to numerical problems in the optimization algorithms and did not reflect the true performance of the method. The parsimony method has a very low rate of false positives but very little power for detecting positive selection or identifying positively selected sites. [1]: #ref-25 [2]: #ref-19
机译:[Suzuki and Gojobori(1999)] [1]的简约方法和[Nielsen and Yang(1998)] [2]的工作开发的最大似然方法是检测同源蛋白编码序列中正选择的两种广泛使用的方法。两种方法都将过多的非同义(替换)替换作为肯定选择的证据。先前发表的模拟研究比较了这两种方法的性能,结果相矛盾。在这里,我们进行了更全面的仿真研究,以覆盖和扩展先前研究中使用的参数空间。我们还重新分析了先前提出的使用最大似然法进行分析时会引起问题的HLA数据集。我们的新模拟和对HLA数据的重新分析表明,最大似然法在较大范围的参数值上检测正选择具有良好的功效和准确性。先前的研究报告该方法的性能较差,这似乎是由于优化算法中的数值问题所致,并未反映该方法的真实性能。简约方法的假阳性率非常低,但是检测阳性选择或识别阳性选择位点的能力非常弱。 [1]:#ref-25 [2]:#ref-19

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