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Detecting Introgression in Anopheles Mosquito Genomes Using a Reconciliation-Based Approach

机译:使用基于和解的方法检测anopheles蚊子基因组的血栓引发

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Introgression is an important evolutionary mechanism in insects and animals evolution. Current methods for detecting introgression rely on the analysis of phylogenetic incongruence, using either statistical tests based on expected phylogenetic patterns in small phylogenies or probabilistic modeling in a phylogenetic network context. Introgression leaves a phylogenetic signal similar to horizontal gene transfer, and it has been suggested that its detection can also be approached through the gene tree/species tree reconciliation framework, which accounts jointly for other evolutionary mechanisms such as gene duplication and gene loss. However so far the use of a reconciliation-based approach to detect introgression has not been investigated in large datasets. In this work, we apply this principle to a large dataset of Anopheles mosquito genomes. Our reconciliation-based approach recovers the extensive introgression that occurs in the gambiae complex, although with some variations compared to previous reports. Our analysis also suggests a possible ancient introgression event involving the ancestor of An. christyi.
机译:血栓增长是昆虫和动物进化中的重要进化机制。检测迟发的目前方法依赖于系统发育性能分析,使用基于小文学的预期系统发育模式或系统发育网络背景下的概率建模的统计试验。迟发患有与水平基因转移类似的系统发育信号,并且已经提出其检测也可以通过基因树/物种树和解框架来接近,该框架共同考虑到其他进化机制,例如基因重复和基因损失。然而,到目前为止,在大型数据集中尚未调查使用基于和解的方法来检测基于和解的方法。在这项工作中,我们将这一原则应用于蚊子蚊子基因组的大型数据集。我们的和解 - 基于和解的方法恢复了冈比亚复合体中发生的广泛血气,尽管与之前的报告相比,有一些变化。我们的分析还提出了涉及祖先的可能的古代钝化事件。 Christyi。

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