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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic and evolutionary implications of complete chloroplast genome sequences of four early-diverging angiosperms: Buxus (Buxaceae), Chloranthus (Chloranthaceae), Dioscorea (Dioscoreaceae), and Illicium (Schisandraceae)
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Phylogenetic and evolutionary implications of complete chloroplast genome sequences of four early-diverging angiosperms: Buxus (Buxaceae), Chloranthus (Chloranthaceae), Dioscorea (Dioscoreaceae), and Illicium (Schisandraceae)

机译:系统发育和进化意义的四个早期散布被子植物的完整叶绿体基因组序列:仙鹤草(Buxaceae),桔梗(Chloranthaceae),Dioscorea(Dioscoreaceae)和Illicium(Schisandraceae)

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摘要

We have determined the complete chloroplast genome sequences of four early-diverging lineages of angiosperms, Buxus (Buxaceae), Chloranthus (Chloranthaceae), Dioscorea (Dioscoreaceae), and Illicium (Schisandraceac), to examine the organization and evolution of plastid genomes and to estimate phylogenetic relationships among angiosperms. For the most part, the organization of these plastid genomes is quite similar to the ancestral angiosperm plastid genome with a few notable exceptions. Dioscorea has lost one protein-coding gene, rps16; this gene loss has also happened independently in four other land plant lineages, liverworts, conifers, Populus, and legumes. There has also been a small expansion of the inverted repeat (IR) in Dioscorea that has duplicated trnH-GUG. This event has also occurred multiple times in angiosperms, including in monocots, and in the two basal angiosperms Nuphar and Drimys. The Illicium chloroplast genome is unusual by having a 10 kb contraction of the IR. The four taxa sequenced represent key groups in resolving phylogenetic relationships among angiosperms. Illicium is one of the basal angiosperms in the Austrobaileyales, Chloranthus (Chloranthales) remains unplaced in angiosperm classifications, and Buxus and Dioscorea are early-diverging eudicots and monocots, respectively. We have used sequences for 61 shared protein-coding genes from these four genomes and combined them with sequences from 35 other genomes to estimate phylogenetic relationships using parsimony, likelihood, and Bayesian methods. There is strong congruence among the trees generated by the three methods, and most nodes have high levels of support. The results indicate that Amborella alone is sister to the remaining angiosperms; the Nymphaeales represent the next-diverging clade followed by Illicium; Chloranthus is sister to the magnoliids and together this group is sister to a large clade that includes eudicots and monocots; and Dioscorea represents an early-diverging lineage of monocots just internal to Acorns. Published by Elsevier Inc.
机译:我们已经确定了被子植物的四个早期分化谱系的完整叶绿体基因组序列,即黄杨(Buxaceae),绿藻(Chloranthaceae),Dioscorea(Dioscoreaceae)和Illicium(Schisandraceac),以检查质体基因组的组织和进化,并估算被子植物之间的系统发育关系。在大多数情况下,这些质体基因组的组织与祖先被子植物质体基因组非常相似,但有一些明显的例外。薯os已经失去了一个蛋白质编码基因rps16;这种基因的丧失还发生在其他四个陆生植物谱系,地艾,针叶树,胡杨和豆科植物中。薯os中的反向重复序列(IR)也有小幅扩展,已复制了trnH-GUG。在被子植物中,包括在单子叶植物中,以及在两个基部被子植物Nuphar和Drimys中,也多次发生该事件。 Illicium叶绿体基因组通过IR的10 kb收缩而异常。排序的四个分类单元代表解决被子植物系统发育关系的关键组。八角茴香是大叶白菜的基础被子植物之一,绿藻(Chloranthales)在被子植物分类中没有被放置,而黄杨和薯Di分别是早熟的双子叶植物和单子叶植物。我们已经使用了来自这四个基因组的61个共享蛋白质编码基因的序列,并将它们与来自其他35个基因组的序列组合在一起,以使用简约,似然和贝叶斯方法来估计系统发育关系。三种方法生成的树之间具有很强的一致性,并且大多数节点都具有高水平的支持。结果表明,仅Amborella是其余被子植物的姐妹。睡莲代表紧随其后的下一个分支。剑兰是木兰属的姊妹,这群人是包括双子叶植物和单子叶植物的大型进化枝的姐妹。 Dioscorea代表了橡子内部单子叶植物的早期分化谱系。由Elsevier Inc.发布

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