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叶绿体和核DNA标记的系统发育效用以及茜草科丰花草族的系统发育

The phylogenetic utility of chloroplast and nuclear DNA markers and the phylogeny of the Rubiaceae tribe Spermacoceae.

作者信息

Kårehed Jesper, Groeninckx Inge, Dessein Steven, Motley Timothy J, Bremer Birgitta

机构信息

Bergius Foundation, Royal Swedish Academy of Sciences and Botany Department, Stockholm University, SE-106 91 Stockholm, Sweden.

出版信息

Mol Phylogenet Evol. 2008 Dec;49(3):843-66. doi: 10.1016/j.ympev.2008.09.025. Epub 2008 Oct 10.

Abstract

The phylogenetic utility of chloroplast (atpB-rbcL, petD, rps16, trnL-F) and nuclear (ETS, ITS) DNA regions was investigated for the tribe Spermacoceae of the coffee family (Rubiaceae). ITS was, despite often raised cautions of its utility at higher taxonomic levels, shown to provide the highest number of parsimony informative characters, in partitioned Bayesian analyses it yielded the fewest trees in the 95% credible set, it resolved the highest proportion of well resolved clades, and was the most accurate region as measured by the partition metric and the proportion of correctly resolved clades (well supported clades retrieved from a combined analysis regarded as "true"). For Hedyotis, the nuclear 5S-NTS was shown to be potentially as useful as ITS, despite its shorter sequence length. The chloroplast region being the most phylogenetically informative was the petD group II intron. We also present a phylogeny of Spermacoceae based on a Bayesian analysis of the four chloroplast regions, ITS, and ETS combined. Spermacoceae are shown to be monophyletic. Clades supported by high posterior probabilities are discussed, especially in respect to the current generic classification. Notably, Oldenlandia is polyphyletic, the two subgenera of Kohautia are not sister taxa, and Hedyotis should be treated in a narrow sense to include only Asian species.

摘要

针对茜草科咖啡族的精子草属,研究了叶绿体(atpB - rbcL、petD、rps16、trnL - F)和核DNA区域(ETS、ITS)在系统发育分析中的效用。尽管在较高分类水平上使用ITS时常有人提出谨慎警告,但在分区贝叶斯分析中,ITS显示出提供的简约信息特征数量最多,在95%可信集中产生的树最少,它解析出的高分辨率分支比例最高,并且根据分区度量和正确解析分支的比例(从联合分析中检索到的得到充分支持的分支视为“真实”)衡量,它是最准确的区域。对于耳草属,核5S - NTS尽管序列长度较短,但显示出与ITS具有潜在的同等效用。在系统发育信息方面最丰富的叶绿体区域是petD第二组内含子。我们还基于对四个叶绿体区域、ITS和ETS的联合贝叶斯分析,展示了精子草属的系统发育树。结果表明精子草属是单系的。讨论了由高后验概率支持的分支,特别是关于当前的属级分类。值得注意的是,白花蛇舌草属是多系的,蛇根草属的两个亚属不是姐妹类群,并且耳草属应狭义地处理,仅包括亚洲物种。

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