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幽灵渗入对基于合并的种系发生树推断和分歧时间估计的影响。

Impact of Ghost Introgression on Coalescent-Based Species Tree Inference and Estimation of Divergence Time.

机构信息

State Key Laboratory of Earth Surface Processes and Resource Ecology, Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, College of Life Sciences, Beijing Normal University, Beijing 100875, China.

出版信息

Syst Biol. 2023 May 19;72(1):35-49. doi: 10.1093/sysbio/syac047.

Abstract

The species studied in any evolutionary investigation generally constitute a small proportion of all the species currently existing or that have gone extinct. It is therefore likely that introgression, which is widespread across the tree of life, involves "ghosts," that is, unsampled, unknown, or extinct lineages. However, the impact of ghost introgression on estimations of species trees has rarely been studied and is poorly understood. Here, we use mathematical analysis and simulations to examine the robustness of species tree methods based on the multispecies coalescent model to introgression from a ghost or extant lineage. We found that many results originally obtained for introgression between extant species can easily be extended to ghost introgression, such as the strongly interactive effects of incomplete lineage sorting (ILS) and introgression on the occurrence of anomalous gene trees. The relative performance of the summary species tree method (ASTRAL) and the full-likelihood method (*BEAST) varies under different introgression scenarios, with the former being more robust to gene flow between nonsister species, whereas the latter performing better under certain conditions of ghost introgression. When an outgroup ghost (defined as a lineage that diverged before the most basal species under investigation) acts as the donor of the introgressed genes, the time of root divergence among the investigated species generally was overestimated, whereas ingroup introgression, as commonly perceived, can only lead to underestimation. In many cases of ingroup introgression that may or may not involve ghost lineages, the stronger the ILS, the higher the accuracy achieved in estimating the time of root divergence, although the topology of the species tree is more prone to be biased by the effect of introgression. [Anomalous gene trees; divergence time; ghost introgression; multispecies coalescent; simulation; species tree.].

摘要

在任何进化研究中,所研究的物种通常只占现存或已灭绝物种的一小部分。因此,广泛存在于生命之树中的基因渐渗可能涉及“幽灵”,即未采样、未知或已灭绝的谱系。然而,幽灵基因渐渗对物种树估计的影响很少被研究,也知之甚少。在这里,我们使用数学分析和模拟来检验基于多物种合并模型的物种树方法对幽灵或现存谱系基因渐渗的稳健性。我们发现,许多原本用于现存物种基因渐渗的结果可以很容易地扩展到幽灵基因渐渗,例如不完全谱系分选(ILS)和基因渐渗对异常基因树发生的强烈相互作用。摘要物种树方法(ASTRAL)和全似然法(*BEAST)的相对性能在不同的基因渐渗情景下有所不同,前者对非同系物种之间的基因流更稳健,而后者在某些幽灵基因渐渗条件下表现更好。当一个外群幽灵(定义为在研究的最基础物种之前分化的谱系)作为渐渗基因的供体时,所研究物种的根分歧时间通常被高估,而内群基因渐渗,如通常所认为的,只能导致低估。在许多可能涉及或不涉及幽灵谱系的内群基因渐渗情况下,ILS 越强,估计根分歧时间的准确性就越高,尽管物种树的拓扑结构更容易受到基因渐渗的影响而产生偏差。[异常基因树;分歧时间;幽灵基因渐渗;多物种合并;模拟;物种树。]

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