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首页> 外文期刊>Molecular phylogenetics and evolution >Evolutionary history of the Pasque-flowers (Pulsatilla, Ranunculaceae): Molecular phylogenetics, systematics and rDNA evolution
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Evolutionary history of the Pasque-flowers (Pulsatilla, Ranunculaceae): Molecular phylogenetics, systematics and rDNA evolution

机译:Pasque花的进化历史(pulsatilla,ranunculaceae):分子系统,系统性和rdna演化

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摘要

Pulsatilla (Anemoneae, Ranunculaceae) is sister to Anemone s.s. and contains ca 40 perennial species of considerable horticultural and medical importance. We sequenced 31 of those species, plus nine subspecies, two cultivars and six outgroups, for two nuclear regions (high-copy nrITS and low-copy MLH1) and three plastid regions (rbcL, accD-psaL trnL intron) in order to generate the first comprehensive species-level phylogeny of the genus. Phylogenetic trees were constructed using both concatenation-based (maximum likelihood and Bayesian inference) and coalescence methods. The better supported among the internal nodes were subjected to molecular clock dating and ancestral area reconstruction, and karyotypic characters identified by us using Fluorescence In Situ Hybridization were mapped across the tree. The preferred species tree from the coalescence analysis formed the basis of a new infrageneric classification based on monophyly plus degree of divergence. The earliest divergent of the three subgenera, Kostyczewianae, is represented by only a single species that is morphologically intermediate between Anemone s.s. and 'core' Pulsatilla. Subgenus Pulsatilla is considerably richer in species than its sister subgenus Preonanthus and contains three monophyletic sections. Species possessing nodding flowers and pectinately dissected leaves are phylogenetically derived compared with groups possessing erect flowers and palmately lobed leaves. Pulsatilla separated from Anemone s.s. at ca 25 Ma. Our results indicate a central Asian mountain origin of the genus and an initial diversification correlated with late Tertiary global cooling plus regional mountain uplift, aridification and consequent expansion of grasslands. The more rapid and extensive diversification within subgenus Pulsatilla began at ca 3 Ma and continued throughout the Quaternary, driven not only by major perturbations in global climate but also by well-documented polyploidy.
机译:Pulsatilla(Anemoneae,Ranunculaceae)是Anemone S.S.的姐妹并包含CA 40各种园艺和医疗重要性的多年生物种。我们测量了31种物种,加上九个亚种,两个品种和六个小组,两个核区域(高拷贝NRITS和低拷贝MLH1)和三个塑性区域(RBCL,ACCD-PSAL TRNL内含子),以产生第一个综合物种级别的属性。使用基于级联(最大可能性和贝叶斯推理)和聚结方法构建系统发育树。内部节点之间的较好支持的是进行分子时钟约会和祖先的区域重建,并且我们使用原位杂交的荧光鉴定的核型字符被映射到树上。来自聚结分析的优选物种树基于一般加上发散程度形成了新的Incrogeneric分类的基础。三个亚亚因素,Kostyczewianae的最早发散由只有单一物种表示在内蒙骨S.S.之间的形态学中间体。和'核心'pulsatilla。 Subguus pulsatilla比其姐妹子属植物的物种相当富裕,并含有三个单晶部分。与具有竖立花朵的基团和掌心裂片的叶片相比,具有点头花和壁植物叶片的物种是植物源性衍生的。 Pulsatilla与银莲花属S.。在Ca 25 ma。我们的结果表明,与初级多元化的初始多样化,与初级全球冷却加上区域山地隆起,充满联系和随后的草原扩展相关的初步多样化。 Subguus Pulsatilla内的速度和广泛多样化始于CA 3 MA,并在整个第四纪持续,不仅通过全球气候的主要扰动,而且通过良好地记录的多倍体驱动。

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