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Resolving and dating the phylogeny of Cornales - Effects of taxon sampling, data partitions, and fossil calibrations

机译:解决和确定角膜的系统发育-分类单元采样,数据分区和化石校准的影响

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The order Cornales descends from the earliest split in the Asterid clade of flowering plants. Despite a few phylogenetic studies, relationships among families within Cornales remain unclear. In the present study, we increased taxon and character sampling to further resolve the relationships and to date the early diversification events of the order. We conducted phylogenetic analyses of sequence data from 26S rDNA and six chloroplast DNA (cpDNA) regions using parsimony (MP), maximum likelihood (ML), and Bayesian inference (BI) methods with different partition models and different data sets. We employed relaxed, uncorrelated molecular clocks on BEAST to date the phylogeny and examined the effects of different taxon sampling, fossil calibration, and data partitions. Our results from ML and BI analyses of the combined cpDNA sequences and combined cpDNA and 26S rDNA data suggested the monophyly of each family and the following familial relationships ((Cornaceae-Alangiaceae)-(Curtisiaceae-Grubbiaceae))-(((Nyssaceae-Davidiaceae)-Mastixiaceae)-((Hydrostachyaceae-(Hydrangeaceae-Loasaceae))). These relationships were strongly supported by posterior probability and bootstrap values, except for the sister relationship between the N-D-M and H-H-L clades. The 26S rDNA data and some MP trees from cpDNA and total evidence suggested some alternative alignments for Hydrostachyaceae within Cornales, but results of SH tests indicated that these trees were significantly worse explanations of the total data. Phylogenetic dating with simultaneous calibration of multiple nodes suggested that the crown group of Cornales originated around the middle Cretaceous and rapidly radiated into several major clades. The origins of most families dated back to the late Cretaceous except for Curtisiaceae and Grubbiaceae which may have diverged in the very early Tertiary. We found that reducing sampling density within families and analyzing partitioned data sets from coding and noncoding cpDNA, 26S rDNA, and combined data sets produced congruent estimation of divergence times, but reducing the number and changing positions of calibration points resulted in very different estimations.
机译:Cornales的顺序起源于开花植物Asterid进化枝中最早的分裂。尽管进行了一些系统发育研究,但Cornales家庭之间的关系仍然不清楚。在本研究中,我们增加了分类和字符采样以进一步解决关系,并确定了该订单的早期多样化事件。我们使用简约(MP),最大似然(ML)和贝叶斯推断(BI)方法对不同分区模型和不同数据集进行了26S rDNA和六个叶绿体DNA(cpDNA)区域序列数据的系统发育分析。我们在BEAST上采用了松散的,不相关的分子钟来确定系统发育的日期,并研究了不同分类单元采样,化石校准和数据分区的影响。我们对组合cpDNA序列,组合cpDNA和26S rDNA数据进行的ML和BI分析得出的结果表明,每个科的单性以及以下家族关系((玉米科-Alangiaceae)-(Curtisiaceae-Grubbiaceae))-(((Nyssaceae-Davidiaceae )-Mastixiaceae)-((Hydrostachyaceae-(Hydrangeaceae-Loasaceae)))。这些关系得到后验概率和bootstrap值的有力支持,但NDM和HHL进化枝之间的姐妹关系除外。26SrDNA数据和一些MP树cpDNA和总的证据表明在角质树中水苏科的其他比对方法,但是SH测试的结果表明这些树对总数据的解释较差,系统发育年代学同时校准了多个节点,表明角树的冠状群起源于中间白垩纪并迅速辐射到几个主要分支中,大多数家庭的起源可以追溯到白垩纪晚期除了Curtisiaceae和Grubbiaceae,它们在第三纪初期可能已经分叉了。我们发现,减少族内的采样密度并分析编码和非编码cpDNA,26S rDNA和组合数据集的分区数据集,可以得出一致的发散时间估计值,但是减少校准点的数量和改变位置会导致估计值大相径庭。

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