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首页> 外文期刊>Molecular phylogenetics and evolution >New insights into the Usnea cornuta aggregate (Parmeliaceae, lichenized Ascomycota): Molecular analysis reveals high genetic diversity correlated with chemistry
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New insights into the Usnea cornuta aggregate (Parmeliaceae, lichenized Ascomycota): Molecular analysis reveals high genetic diversity correlated with chemistry

机译:进入USNEA Cornuta骨料的新见解(Parmeliaceae,ascomycota):分子分析揭示了高遗传多样性与化学相关

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摘要

Biological processes such as hybridization, incomplete lineage sorting and gene flow can obscure the recognition of distinct evolutionary lineages, particularly in groups of organisms that have recently diverged. Therefore, compiling pieces of evidence from diverse data sources is critical to accurately assess species boundaries in such groups. The increasing availability of DNA sequence data allows for a much deeper understanding of diversification and speciation processes and their consequences on biodiversity. In this study, we applied an integrative approach based on DNA sequence, chemical, geographic and morphological data to attempt to define species boundaries in the lichen-forming genus Usnea (Parmeliaceae), particularly the U. cornuta aggregate, a cosmo-politan species group. We provide the first species delimitation for this group in the neotropics based on the multispecies coalescent (MSC) model. Using ITS rDNA and two protein-coding genes, Mcm7 and RPB1, we estimated the species tree under the MSC model in a Bayesian framework using STACEY. Our results indicate that at least nine strongly supported distinct lineages coexist in the U. cornuta aggregate, which are well chemically characterized. Additionally, we found evidence for the polyphyly of three morphospecies, Usnea brasiliensis, U. cornuta and U. dasaea.
机译:杂交,不完全谱系分类和基因流动的生物过程可以模糊识别不同的进化谱系,特别是在最近分叉的生物组中。因此,从各种数据源的编译证据是准确地评估这些组中的物种边界至关重要。 DNA序列数据的增加可用性允许更深入地了解多样化和形态过程以及对生物多样性的后果。在这项研究中,我们应用了基于DNA序列,化学,地理和形态学数据的一体化方法,以试图在地衣形成的属植物(Parmeliaceae)中定义物种界限,特别是玉米饼骨料,一种宇宙 - Politan物种组。我们基于多层播放(MSC)模型,为新生儿提供该组的第一个物种划定。使用其RDNA和两种蛋白质编码基因,MCM7和RPB1,我们估计使用Stacey的贝叶斯框架中的MSC模型下的物种树。我们的结果表明,至少九个强烈支持的不同谱系在U. Cornuta骨料中共存,这在化学表征良好。此外,我们发现了三个形态学的多种,USNEA Brasiliensis,U.Cornuta和U. Dasaea的证据。

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