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Estimating the Frequency of Horizontal Gene Transfer Using Phylogenetic Models of Gene Gain and Loss

机译:使用基因得失的系统发育模型估算水平基因转移的频率

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We analyze patterns of gene presence and absence in a maximum likelihood framework with rate parameters for gene gain and loss. Standard methods allow independent gains and losses in different parts of a tree. While losses of the same gene are likely to be frequent, multiple gains need to be considered carefully. A gene gain could occur by horizontal transfer or by origin of a gene within the lineage being studied. If a gene is gained more than once, then at least one of these gains must be a horizontal transfer. A key parameter is the ratio of gain to loss rates, a/v. We consider the limiting case known as the infinitely many genes model, where a/v tends to zero and a gene cannot be gained more than once. The infinitely many genes model is used as a null model in comparison to models that allow multiple gains. Using genome data from cyanobacteria and archaea, it is found that the likelihood is significantly improved by allowing for multiple gains, but the average a/v is very small. The fraction of genes whose presence/absence pattern is best explained by multiple gains is only 15% in the cyanobacteria and 20% and 39% in two data sets of archaea. The distribution of rates of gene loss is very broad, which explains why many genes follow a treelike pattern of vertical inheritance, despite the presence of a significant minority of genes that undergo horizontal transfer.
机译:我们在最大似然框架中分析基因存在和不存在的模式,以及基因增益和丢失的速率参数。标准方法允许在树的不同部分进行独立的收益和损失。虽然同一个基因的丢失很可能会经常发生,但需要仔细考虑多重获得。基因的获得可以通过水平转移或通过研究谱系中基因的起源而发生。如果一个基因获得了一次以上,那么这些获得中的至少一项必须是水平转移。一个关键参数是增益与损耗率之比,a / v。我们考虑称为无限多个基因模型的极限情况,其中a / v趋于零,并且一个基因不能获得多次。与允许多重收益的模型相比,无数的基因模型被用作空模型。使用来自蓝细菌和古细菌的基因组数据,发现通过允许多次获得显着改善了可能性,但是平均a / v非常小。在蓝细菌中,通过多重增益可以最好地解释存在/不存在模式的基因比例只有15%,在两个古细菌数据集中只有20%和39%。基因丢失率的分布非常广泛,这解释了为什么尽管有相当少数的基因进行水平转移,但许多基因还是遵循树状的垂直遗传模式。

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