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首页> 外文期刊>Plant Systematics and Evolution >Phylogenetic relationships among the New World cypresses (Hesperocyparis; Cupressaceae): evidence from noncoding chloroplast DNA sequences
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Phylogenetic relationships among the New World cypresses (Hesperocyparis; Cupressaceae): evidence from noncoding chloroplast DNA sequences

机译:新世界柏(阔柏;柏科)之间的亲缘关系:来自非编码叶绿体DNA序列的证据

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Nearly 5.6 kb of noncoding chloroplast DNA sequence was combined with 9.2 kb of previously published sequence in addressing phylogenetic relationships among Callitropsis, Xanthocyparis, and the New World cypresses (Hesperocyparis; Cupressaceae). Maximum likelihood and Bayesian analyses of aligned nucleotide sequence and coded length mutations provide strong support for several relationships. These include a clade in which Xanthocyparis and Callitropsis are successively nested at the base of a monophyletic Hesperocyparis and identification of H. bakeri as sister to the remaining Hesperocyparis. Two principal clades are recovered within Hesperocyparis; (1) the Arizonica group, which contains taxa sometimes recognized as varieties of H. lusitanica, H. guadalupensis, and H. arizonica, and (2) the Macrocarpa group, which contains H. macrocarpa and H. goveniana and its allies. Our results are equivocal with respect to placement of H. macnabiana, a morphologically distinct species resolved as the sister group to either the Macrocarpa or Arizonica group, depending on the data set analyzed. We discover many instances in which taxa recognized as varieties or closely related species are placed in disparate parts of the phylogeny. These include segregates of H. lusitanica, H. guadalupensis, and H. arizonica, all of which are included in clades with other species. Despite analyzing 14,799 bp of aligned sequence and 230 binary characters, we find poor support for several relationships, especially within the Arizonica group. These results suggest recovery of well-supported relationships among the closely related taxa of Hesperocyparis will require additional sources of evidence (e.g., morphological, biochemical characters). Implications for morphological evolution and taxonomic revision are discussed.Digital Object Identifier http://dx.doi.org/10.1007/s00606-012-0696-3
机译:将近5.6 kb的非编码叶绿体DNA序列与9.2 kb的先前发布的序列组合在一起,以解决拟南芥,黄腐和新世界柏(阔柏;柏科)之间的系统发生关系。对齐核苷酸序列和编码长度突变的最大似然和贝叶斯分析为几种关系提供了有力的支持。其中包括一个进化枝,其中的黄单胞菌和愈伤组织被依次嵌套在单片的异形藻的基部,并鉴定出H. bakeri是其余异形藻的姐妹。在蛇形藻中发现了两个主要进化枝。 (1)包含有时被认为是lusitanica,H。guadalupensis和H.arizonica变种的分类单元的亚利桑那组,和(2)包含H. macrocarpa和H. goveniana及其盟友的Macrocarpa组。我们的结果对于H. macnabiana(一种形态学独特的物种,作为Macrocarpa或Arizonica组的姊妹组而解析)的位置而言是模棱两可的,具体取决于所分析的数据集。我们发现许多实例,其中被认为是变种或密切相关物种的分类单元被放置在系统发育的不同部分。这些包括lustanica,H。guadalupensis和H. arizonica的分离物,所有这些都与其他物种一起包含在进化枝中。尽管分析了14799 bp的比对序列和230个二进制字符,但我们发现对几种关系的支持不佳,尤其是在Arizonica组中。这些结果表明,要恢复紧密结合的紫锥花分类群之间的良好关系,还需要其他证据来源(例如形态,生化特征)。讨论了对形态演变和分类学修订的意义。数字对象标识符http://dx.doi.org/10.1007/s00606-012-0696-3

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