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首页> 外文期刊>The New Phytologist >Whole plastome sequencing reveals deep plastid divergence and cytonuclear discordance between closely related balsam poplars, Populus balsamifera and P-trichocarpa (Salicaceae)
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Whole plastome sequencing reveals deep plastid divergence and cytonuclear discordance between closely related balsam poplars, Populus balsamifera and P-trichocarpa (Salicaceae)

机译:整个质体组测序揭示了紧密相关的苦瓜杨,苦瓜和P-毛果木(Salicaceae)之间的深质体差异和细胞核不一致。

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As molecular phylogenetic analyses incorporate ever-greater numbers of loci, cases of cytonuclear discordance - the phenomenon in which nuclear gene trees deviate significantly from organellar gene trees - are being reported more frequently. Plant examples of topological discordance, caused by recent hybridization between extant species, are well known. However, examples of branch-length discordance are less reported in plants relative to animals. We use a combination of de novo assembly and reference-based mapping using short-read shotgun sequences to construct a robust phylogeny of the plastome for multiple individuals of all the common Populus species in North America. We demonstrate a case of strikingly high plastome divergence, in contrast to little nuclear genome divergence, in two closely related balsam poplars, Populus balsamifera and Populus trichocarpa (Populus balsamifera ssp.trichocarpa). Previous studies with nuclear loci indicate that the two species (or subspecies) diverged since the late Pleistocene, whereas their plastomes indicate deep divergence, dating to at least the Pliocene (6-7Myr ago). Our finding is in marked contrast to the estimated Pleistocene divergence of the nuclear genomes, previously calculated at 75000yr ago, suggesting plastid capture from a ghost lineage' of a now-extinct North American poplar.
机译:随着分子系统发育分析纳入越来越多的基因座,越来越多地报道了细胞核不一致的情况-细胞核不一致的现象-核基因树明显偏离细胞器基因树的现象。由现存物种之间最近的杂交引起的拓扑不一致的植物实例是众所周知的。但是,相对于动物,在植物中较少报道分支长度不一致的例子。我们使用从头组装和基于参考的作图法结合使用短读shot弹枪序列,为北美所有常见胡杨树种的多个个体构建质体系统的系统发育系统。我们证明了一个案例,在两个紧密相关的苦瓜杨,苦瓜和毛果杨(Populus balsamifera ssp.trichocarpa)中,与很少的核基因组差异相比,惊人的高质体差异。先前有关核基因座的研究表明,自更新世晚期以来,这两个物种(或亚种)发生了分化,而它们的质体组显示出深度的分化,至少可以追溯到上新世(6-7Myr以前)。我们的发现与先前在75000年以前计算的估计的核基因组更新世差异形成鲜明对比,这表明质体从现已灭绝的北美杨树的“幽灵谱系”中捕获。

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