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Molecular phylogeny of Magnolia (Magnoliaceae) inferred from cpDNA sequences and evolutionary divergence of the floral scents

机译:从cpDNA序列推断木兰(木兰科)的分子系统发育和花香的进化差异

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摘要

Flowers of Magnoliaceae emit strong to moderate odors composed of various types of chemical compounds, usually present in distinctive combinations within taxa. Some temperate eastern Asian and North American species of Magnolia (disjuncts), however, have similar chemical profiles. A molecular phylogeny of Magnoliaceae was constructed to reveal phylogenetic relationships of taxa by sequencing the trnK intron (including the matK coding region), psbA-trnH, and atpB-rbcL intergenic spacer regions of chloroplast DNA from 25 Magnolia, two Michelia, and two Liriodendron taxa. The psbA-trnH spacer region showed twice the sequence divergence (0.0157) of the trnK intron (0.0073) or the mark coding region (0.0077). The strict consensus tree constructed from the combined data set (ca. 3,700 bp) indicated the genus Magnolia was polyphyletic containing Michelia species as ingroup. The clade of Magnolia liliifera var. obovata, M. coco, and M. delavayi formed the first branch. Among the remaining species, two additional large clades were recognized, Lev one comprised of American evergreen Magnolia species and another of subgenus Yulania. The relationship among sect. Rytidospermum taxa was not clearly resolved. Parsimonious mapping of the floral scent chemical characters was performed onto the molecular phylogenetic tree to discuss evolutionary trends of the floral scent chemistries.
机译:木兰科植物的花朵散发出强烈到中度的气味,这些气味由各种类型的化合物组成,通常以不同的组合存在于分类单元中。但是,一些温带的东亚和北美木兰属(杂种)具有相似的化学特征。通过对25个木兰,两个含羞草和两个鹅掌d的trnK内含子(包括matK编码区),psbA-trnH和atpB-rbcL基因间隔区进行测序,揭示了木兰科的分子系统发育关系。分类单元。 psbA-trnH间隔区显示出trnK内含子(0.0073)或标记编码区(0.0077)的两倍序列差异(0.0157)。从组合数据集(约3,700 bp)构建的严格共有树表明,木兰属是多系的,含含笑属物种。玉兰的进化枝。 obovata,M。coco和M. delavayi组成了第一个分支。在剩下的物种中,还发现了另外两个大型进化枝,Lev一个由美国常绿木兰属组成,另一个由Yulania属组成。宗派之间的关系。 Rytidospermum分类群没有明确解决。将花香化学特性的简约映射绘制到分子系统树上,以讨论花香化学的演变趋势。

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