首页> 外文期刊>Evolution: International Journal of Organic Evolution >Mitochondrial introgression and incomplete lineage sorting through space and time: Phylogenetics of crotaphytid lizards
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Mitochondrial introgression and incomplete lineage sorting through space and time: Phylogenetics of crotaphytid lizards

机译:线粒体渗入和空间和时间的不完整谱系分选:蛇兰科蜥蜴的系统发育

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We investigate the roles of mitochondrial introgression and incomplete lineage sorting during the phylogenetic history of crotaphytid lizards. Our Bayesian phylogenetic estimate for Crotaphytidae is based on analysis of mitochondrial DNA sequence data for 408 individuals representing the 12 extant species of Crotaphytus and Gambelia. The mitochondrial phylogeny disagrees in several respects with a previously published morphological tree, as well as with conventional species designations, and we conclude that some of this disagreement stems from hybridization-mediated mitochondrial introgression, as well as from incomplete lineage sorting. Unidirectional introgression of Crotaphytus collaris (western collared lizard) mitochondria into C. reticulatus (reticulate collared lizard) populations in the Rio Grande Valley of Texas has resulted in the replacement of ancestral C. reticulatus mitochondria over approximately two-thirds of the total range of the species, a linear distance of similar to 270 km. Introgression of C. collaris mitochondria into C. bicinctores (Great Basin collared lizard) populations in southwestern Arizona requires a more complex scenario because at least three temporally separated and superimposed introgression events appear to have occurred in this region. We propose an "introgression conveyor" model to explain this unique pattern of mitochondrial variation in this region. We show with ecological niche modeling that the predicted geographical ranges of C. collaris, C. bicinctores, and C. reticulatus during glacial maxima could have provided enhanced opportunities for past hybridization. Our analyses suggest that incomplete lineage sorting and/or introgression has further confounded the phylogenetic placements of additional species including C. nebrius, C. vestigium, C. insularis, C. grismeri, and perhaps G. copei. Despite many independent instances of interspecific hybridization among crotaphytid lizards, the species continue to maintain morphological and geographic cohesiveness throughout their ranges.
机译:我们调查线粒体渗入和不完整的谱系排序在拟南芥蜥蜴的系统发生史中的作用。我们对潮藻科的贝叶斯系统发育估计是基于线粒体DNA序列数据的分析,该数据代表了Crotaphytus和Gambelia的12种现存物种的408个个体。线粒体系统发育在某些方面与先前发表的形态树以及常规物种名称不同,我们得出的结论是,某些不同之处源于杂交介导的线粒体基因渗入以及不完整的谱系排序。德克萨斯州里奥格兰德河谷的Crotaphytus ringis(西部领蜥蜴)线粒体单向渗入C. reticulatus(网状领蜥蜴)种群导致祖先C. reticulatus线粒体的替换约占总范围的三分之二物种,线性距离类似于270公里。在亚利桑那州西南部,将衣原体线粒体渗入到白蜡虫(大盆地领蜥蜴)种群中需要更复杂的情况,因为在该地区似乎至少发生了三个时间上分开且重叠的渗入事件。我们提出了一个“渐渗输送器”模型来解释这种区域中线粒体变异的独特模式。我们用生态位模型显示,冰河最大期间的C.项圈,C.bicinctores和C.reticulatus的预测地理范围可能为过去的杂交提供了更多的机会。我们的分析表明,不完整的谱系排序和/或基因渗入进一步混淆了其他物种的系统发育位置,包括C. nebrius,C.vestigium,C。insularis,C。grismeri以及G. copei。尽管在角藻类蜥蜴之间存在许多种间杂交的独立实例,但该物种在其整个范围内仍保持形态和地理凝聚力。

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