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首页> 外文期刊>Cladistics: The international journal of the Willi Hennig Society >Phylogeny of Impatiens (Balsaminaceae): integrating molecular and morphological evidence into a new classification
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Phylogeny of Impatiens (Balsaminaceae): integrating molecular and morphological evidence into a new classification

机译:凤仙花的系统发育:分子和形态学证据整合到一个新的分类

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Impatiens L.is one of the largest angiosperm genera, containing over 1000 species, and is notorious for its taxonomic difficulty. Here, we present, to our knowledge, the most comprehensive phylogenetic analysis of the genus to date based on a total evidence approach. Forty-six morphological characters, mainly obtained from our own investigations, are combined with sequence data from three genetic regions, including nuclear ribosomal ITS and plastid atpB-rbcL and trnL-F. We include 150 Impatiens species representing all clades recovered by previous phylogenetic analyses as well as three outgroups. Maximum-parsimony and Bayesian inference methods were used to infer phylogenetic relationships. Our analyses concur with previous studies, but in most cases provide stronger support. Impatiens splits into two major clades. For the first time, we report that species with three-colpate pollen and four carpels form a monophyletic group (clade I). Within clade II, seven well-supported subclades are recognized. Within this phylogenetic framework, character evolution is reconstructed, and diagnostic morphological characters for different clades and subclades are identified and discussed. Based on both morphological and molecular evidence, a new classification outline is presented, in which Impatiens is divided into two subgenera, subgen. Clavicarpa and subgen. Impatiens; the latter is further subdivided into seven sections.
机译:Impatiens L.是最大的被子植物之一,包含1000多个物种,并且因其分类困难而臭名昭著。在这里,我们就我们所知,基于全证据方法,提供了迄今为止最全面的类属系统发育分析。主要从我们自己的研究中获得的46个形态特征与来自三个遗传区域的序列数据相结合,包括核糖体ITS和质体atpB-rbcL和trnL-F。我们包括150种凤仙花种类,代表通过先前的系统发育分析回收的所有进化枝以及三个外群。采用最大简约和贝叶斯推断方法来推断系统发育关系。我们的分析与以前的研究一致,但在大多数情况下提供了更强有力的支持。凤仙花分裂成两个主要分支。我们首次报告具有三茄花粉和四个心皮的物种形成单系群(第I类)。在进化枝II中,可以识别出七个支撑良好的进化枝。在此系统发育框架内,重建字符进化,并鉴定和讨论不同进化枝和亚进化枝的诊断形态特征。基于形态学和分子证据,提出了一种新的分类纲要,其中凤仙花被分为两个亚属,亚属。锁骨和亚基因。凤仙花;后者又细分为七个部分。

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