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首页> 外文期刊>Molecular phylogenetics and evolution >Increased sampling of both genes and taxa improves resolution of phylogenetic relationships within Magnoliidae, a large and early-diverging clade of angiosperms
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Increased sampling of both genes and taxa improves resolution of phylogenetic relationships within Magnoliidae, a large and early-diverging clade of angiosperms

机译:增加基因和分类单元的采样可改善在被子植物大而早期分化的Magnoliidae内系统发育关系的分辨率。

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摘要

Magnoliidae have been supported as a clade in the majority of large-scale molecular phylogenetic studies of angiosperms. This group consists of about 10,000 species assigned to 20 families and four orders, Canellales, Piperales, Laurales, and Magnoliales. Some relationships among the families are still largely debated. Here, we reconstruct the phylogenetic relationships of Magnoliidae as a whole, sampling 199 species (representing ca. 75% of genera) and 12 molecular markers from the three genomes (plastid atpB, matK, trnL intron, trnL-trnF spacer, ndhF, rbcL; mitochondrial atp1, matR, mtSSU, mtLSU; nuclear 18s rDNA, 26S rDNA). Maximum likelihood, Bayesian and maximum parsimony analyses yielded congruent trees, with good resolution and high support values for higher-level relationships. This study further confirms, with greater levels of support, two major clades in Magnoliidae: Canellales + Piperales and Laurales + Magnoliales. Relationships among the 20 families are, in general, well resolved and supported. Several previously ambiguous relationships are now well supported. For instance, the Aristolochiaceae s.l. (incl. Asaroideae, Aristolochioideae, and Lactoris) are monophyletic with high support when Hydnoraceae are excluded. The latter family was not included in most previous studies because of the lack of suitable plastid sequences, a consequence of the parasitic habit of its species. Here, we confirm that it belongs in Aristolochiaceae. Our analyses also provide moderate support for a sister group relationship between Lauraceae and Monimiaceae. Conversely, the exact position of Magnoliaceae remains very difficult to determine. This study provides a robust phylogenetic background to address the evolutionary history of an important and highly diverse clade of early-diverging angiosperms.
机译:在大多数被子植物的大型分子系统发育研究中,已将Magnoliidae作为进化枝得到了支持。该组由大约10,000个物种组成,分为20个科和4个科,分别为Canellales,Piperales,Laurales和Magnoliales。家庭之间的某些关系仍然存在很大争议。在这里,我们从整体上重建了木兰科的系统发育关系,从三个基因组(质体atpB,matK,trnL内含子,trnL-trnF间隔子,ndhF,rbcL)取样了199种(约占属的75%)和12种分子标记。 ;线粒体atp1,matR,mtSSU,mtLSU;核18s rDNA,26S rDNA)。最大似然,贝叶斯分析和最大简约分析产生了全等的树,具有较高的分辨率和较高的支持值,可用于更高级别的关系。这项研究进一步证实了木兰科的两个主要进化枝:油菜科+胡椒属和劳拉利斯+木兰科。总体而言,这20个家庭之间的关系得到了很好的解决和支持。现在已经很好地支持了几个以前模棱两可的关系。例如,马兜铃科。当排除绣球花科时,(包括Asaroideae,Aristolochioideae和Lactoris)是单亲的,具有较高的支持率。由于缺乏合适的质体序列,该物种的寄生习性导致了后者的研究,因此在大多数先前的研究中均未包括。在这里,我们确认它属于马兜铃科。我们的分析还为月桂科和菊科之间的姐妹群体关系提供了适度的支持。相反,木兰科的确切位置仍然很难确定。这项研究提供了强大的系统发育背景,以解决重要的和高度多样化的早期分化被子植物进化史。

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