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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogeny of the paleotropical fern genus Lepisorus (Polypodiaceae, Polypodiopsida) inferred from four chloroplast DNA regions
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Phylogeny of the paleotropical fern genus Lepisorus (Polypodiaceae, Polypodiopsida) inferred from four chloroplast DNA regions

机译:从四个叶绿体DNA区域推论古生蕨类属(Lepoisorus)的系统发育(Polypodiaceae,Polypodiopsida)

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摘要

Phylogenetic relationships within the paleotropical genus Lepisorus (Polypodiaceae) were investigated using plastid DNA sequences from four regions: rbcL, rps4 and rps4-trnS IGS, trnL intron plus trnL-F IGS, rbcL-atpB IGS. Over 4000 nucleotides were sequenced for 77 specimens belonging to 54 species. Each cpDNA region was analyzed separately and combined into a single dataset. All phylogenetic analyses, maximum parsimony, maximum likelihood and Bayesian Inference of phylogeny, revealed the paraphyly of Lepisorus with the monotypic Drymotaenium miyoshianum and of the paleotropical genus Belvisia nested within the Lepisorus clade. Nine well-supported major clades were found. The phylogenetic results provided new evidence for the sectional classification of Lepisorus. The evolution of three morphological characters, clathrateness of rhizome scales, margin of rhizome scales and defoliated leaves, and the evolution of the karyotype, were reconstructed to identify lineage specific phenotypic character states or combination of characters. Unique character combinations, rather than synapomorphies, were found to be of systematic value in sectional delimitation. The variation of chromosome numbers is largely due to a single aneuploidy event instead of a stepwise reduction during the evolutionary history of this genus.
机译:使用来自四个区域的质体DNA序列研究了古热带Lepisorus(Polypodiaceae)内部的亲缘关系:rbcL,rps4和rps4-trnS IGS,trnL内含子加trnL-F IGS,rbcL-atpB IGS。对属于54个物种的77个标本进行了超过4000个核苷酸的测序。每个cpDNA区域分别进行分析,并合并为一个数据集。所有的系统发育分析,最大简约性,最大似然性和系统进化的贝叶斯推论都揭示了Lepisorus的附生体与单形的Drymotaenium miyoshianum以及古生物属Belvisia嵌套在Lepisorus进化枝中。发现了九个支撑良好的主要进化枝。系统发育结果为钩端螺旋体的分类提供了新的证据。重建了三个形态特征的演变,即根茎鳞片的包合度,根茎鳞片的边缘和落叶的核型以及核型的演变,以鉴定谱系特定的表型性状状态或性状组合。发现独特的字符组合,而不是同义词,在断面定界中具有系统的价值。染色体数目的变化主要是由于单个非整倍性事件,而不是该属进化史中的逐步减少。

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