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A new computational method for the detection of horizontal gene transfer events

机译:一种检测水平基因转移事件的新计算方法

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摘要

In recent years, the increase in the amounts of available genomic data has made it easier to appreciate the extent by which organisms increase their genetic diversity through horizontally transferred genetic material. Such transfers have the potential to give rise to extremely dynamic genomes where a significant proportion of their coding DNA has been contributed by external sources. Because of the impact of these horizontal transfers on the ecological and pathogenic character of the recipient organisms, methods are continuously sought that are able to computationally determine which of the genes of a given genome are products of transfer events. In this paper, we introduce and discuss a novel computational method for identifying horizontal transfers that relies on a gene's nucleotide composition and obviates the need for knowledge of codon boundaries. In addition to being applicable to individual genes, the method can be easily extended to the case of clusters of horizontally transferred genes. With the help of an extensive and carefully designed set of experiments on 123 archaeal and bacterial genomes, we demonstrate that the new method exhibits significant improvement in sensitivity when compared to previously published approaches. In fact, it achieves an average relative improvement across genomes of between 11 and 41% compared to the Codon Adaptation Index method in distinguishing native from foreign genes. Our method's horizontal gene transfer predictions for 123 microbial genomes are available online at .
机译:近年来,可用基因组数据的增加使人们更容易理解生物体通过水平转移的遗传物质增加其遗传多样性的程度。这种转移有可能产生极其动态的基因组,其中很大一部分编码DNA是由外部来源贡献的。由于这些水平转移对受体生物的生态学和致病性的影响,人们一直在寻求能够通过计算确定给定基因组中哪些基因是转移事件产物的方法。在本文中,我们介绍并讨论了一种用于确定水平转移的新颖计算方法,该方法依赖于基因的核苷酸组成,并且无需了解密码子边界。除了适用于单个基因外,该方法还可以轻松扩展到水平转移基因簇的情况。借助对123种古细菌和细菌基因组进行的广泛而精心设计的实验,我们证明了与以前发表的方法相比,该新方法在灵敏度方面具有显着提高。实际上,与区分外来基因和外源基因的密码子适应指数方法相比,它在整个基因组上实现了11%至41%的平均相对改善。我们的方法对123个微生物基因组的水平基因转移预测可在线获得。

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