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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogeny, historical biogeography, and diversification of angiosperm order Ericales suggest ancient Neotropical and East Asian connections
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Phylogeny, historical biogeography, and diversification of angiosperm order Ericales suggest ancient Neotropical and East Asian connections

机译:系统发育,历史生物地理,以及Angiosperm Order ericales的多样化表明古老的新生和东亚联系

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Inferring interfamilial relationships within the eudicot order Ericales has remained one of the more recalcitrant problems in angiosperm phylogenetics, likely due to a rapid, ancient radiation. As a result, no comprehensive time-calibrated tree or biogeographical analysis of the order has been published. Here, we elucidate phylogenetic relationships within the order and then conduct time-dependent biogeographical and diversification analyses by using a taxon and locus-rich supermatrix approach on one-third of the extant species diversity calibrated with 23 macrofossils and two secondary calibration points. Our results corroborate previous studies and also suggest several new but poorly supported relationships. Newly suggested relationships are: (1) holoparasitic Mitrastemonaceae is sister to Lecythidaceae, (2) the clade formed by Mitrastemonaceae + Lecythidaceae is sister to Ericales excluding balsaminoids, (3) Theaceae is sister to the styracoids + sarracenioids + ericoids, and (4) subfamilial relationships with Ericaceae suggest that Arbutoideae is sister to Monotropoideae and Pyroloideae is sister to all subfamilies excluding Arbutoideae, Enkianthoideae, and Monotropoideae. Our results indicate Ericales began to diversify 110 Mya, within Indo-Malaysia and the Neotropics, with exchange between the two areas and expansion out of Indo-Malaysia becoming an important area in shaping the extant diversity of many families. Rapid cladogenesis occurred along the backbone of the order between 104 and 106 Mya. Jump dispersal is important within the order in the last 30 My, but vicariance is the most important cladogenetic driver of disjunctions at deeper levels of the phylogeny. We detect between 69 and 81 shifts in speciation rate throughout the order, the vast majority of which occurred within the last 30 My. We propose that range shifting may be responsible for older shifts in speciation rate, but more recent shifts may be better explained by morphological innovation.
机译:推断奥迪卡秩序中的颈际关系终于仍然是高血管发育中的顽固性问题之一,可能是由于迅速,古老的辐射。因此,未公布对订单的全面的时间校准树或生物地图分析。在此,我们在订单内阐明系统发育关系,然后通过使用23种Macrofosss和两个二级校准点的超常数物种多样性的三分之一的分类仪和富含轨迹的Supermatrix方法进行时间依赖的生物地图和多样化分析。我们的结果证实了以前的研究,并建议了几种新的但不良的关系。新建议的关系是:(1)Holoparasitic Mitractionaceae是莱切西亚的姐妹,(2)由Mitractionacaceae + lecythidaceae组成的思想是牛肉,不包括苯胺蛋白,(3)TheaCeae是臭苯甲酸酯+ Sarracenioids +喉咙+喉咙,(4)与青蒿的亚细世界关系表明,熊库卫星是单调薄膜和Pyroloideae的妹妹,也是所有亚属,不包括arbutoideae,Enkianthoideae和单调妇体。我们的结果表明,Ericales开始在Indo-Malaysia和Neotropics内多元化110个Mya,在两个领域与Indo-Malaysia的扩张之间的交流成为塑造许多家庭的现存多样性的重要领域。沿着104和106 mya的顺序的骨干发生快速的封闭发生。跳转散列在过去30个人的顺序中非常重要,但裁剪是在系统发育的更深层次的水平下疾病的最重要的基质驱动因素。我们在整个订单中检测到69到81次转变,其中大多数在过去30岁内发生。我们提出该范围转移可能负责规范率的较旧的转变,但最近的变化可能会更好地通过形态创新解释。

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