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基于完整叶绿体基因组序列的葡萄属(葡萄科)系统发育分析:分类群抽样和系统发育方法对解决蔷薇类植物间关系的影响

Phylogenetic analyses of Vitis (Vitaceae) based on complete chloroplast genome sequences: effects of taxon sampling and phylogenetic methods on resolving relationships among rosids.

作者信息

Jansen Robert K, Kaittanis Charalambos, Saski Christopher, Lee Seung-Bum, Tomkins Jeffrey, Alverson Andrew J, Daniell Henry

机构信息

Section of Integrative Biology and Institute of Cellular and Molecular Biology, Patterson Laboratories 141, University of Texas, Austin, TX 78712, USA.

出版信息

BMC Evol Biol. 2006 Apr 9;6:32. doi: 10.1186/1471-2148-6-32.

Abstract

BACKGROUND

The Vitaceae (grape) is an economically important family of angiosperms whose phylogenetic placement is currently unresolved. Recent phylogenetic analyses based on one to several genes have suggested several alternative placements of this family, including sister to Caryophyllales, asterids, Saxifragales, Dilleniaceae or to rest of rosids, though support for these different results has been weak. There has been a recent interest in using complete chloroplast genome sequences for resolving phylogenetic relationships among angiosperms. These studies have clarified relationships among several major lineages but they have also emphasized the importance of taxon sampling and the effects of different phylogenetic methods for obtaining accurate phylogenies. We sequenced the complete chloroplast genome of Vitis vinifera and used these data to assess relationships among 27 angiosperms, including nine taxa of rosids.

RESULTS

The Vitis vinifera chloroplast genome is 160,928 bp in length, including a pair of inverted repeats of 26,358 bp that are separated by small and large single copy regions of 19,065 bp and 89,147 bp, respectively. The gene content and order of Vitis is identical to many other unrearranged angiosperm chloroplast genomes, including tobacco. Phylogenetic analyses using maximum parsimony and maximum likelihood were performed on DNA sequences of 61 protein-coding genes for two datasets with 28 or 29 taxa, including eight or nine taxa from four of the seven currently recognized major clades of rosids. Parsimony and likelihood phylogenies of both data sets provide strong support for the placement of Vitaceae as sister to the remaining rosids. However, the position of the Myrtales and support for the monophyly of the eurosid I clade differs between the two data sets and the two methods of analysis. In parsimony analyses, the inclusion of Gossypium is necessary to obtain trees that support the monophyly of the eurosid I clade. However, maximum likelihood analyses place Cucumis as sister to the Myrtales and therefore do not support the monophyly of the eurosid I clade.

CONCLUSION

Phylogenies based on DNA sequences from complete chloroplast genome sequences provide strong support for the position of the Vitaceae as the earliest diverging lineage of rosids. Our phylogenetic analyses support recent assertions that inadequate taxon sampling and incorrect model specification for concatenated multi-gene data sets can mislead phylogenetic inferences when using whole chloroplast genomes for phylogeny reconstruction.

摘要

背景

葡萄科是被子植物中一个具有重要经济价值的科,其系统发育位置目前尚未确定。最近基于一到几个基因的系统发育分析提出了该科的几种不同的系统发育位置,包括石竹目、菊类植物、虎耳草目、五桠果科的姊妹类群,或蔷薇类其他类群的姊妹类群,不过对这些不同结果的支持力度较弱。最近人们对利用完整的叶绿体基因组序列来解析被子植物之间的系统发育关系产生了兴趣。这些研究阐明了几个主要谱系之间的关系,但也强调了分类群抽样的重要性以及不同系统发育方法对获得准确系统发育树的影响。我们对酿酒葡萄的完整叶绿体基因组进行了测序,并利用这些数据评估了27种被子植物之间的关系,其中包括9种蔷薇类植物。

结果

酿酒葡萄的叶绿体基因组长度为160,928 bp,包括一对26,358 bp的反向重复序列,它们被分别为19,065 bp和89,147 bp的小单拷贝区和大单拷贝区隔开。葡萄的基因内容和顺序与许多其他未重排的被子植物叶绿体基因组相同,包括烟草。使用最大简约法和最大似然法对两个数据集(分别包含28或29个分类群,其中包括来自蔷薇类目前公认的七个主要分支中四个分支的八个或九个分类群)的61个蛋白质编码基因的DNA序列进行了系统发育分析。两个数据集的简约法和似然法系统发育树都有力地支持了葡萄科作为其余蔷薇类姊妹类群的位置。然而,桃金娘目在两个数据集中以及两种分析方法中的位置,以及对真蔷薇I类分支单系性的支持情况有所不同。在简约法分析中,纳入棉属对于获得支持真蔷薇I类分支单系性的树是必要的。然而最大似然法分析将黄瓜属置于桃金娘目的姊妹位置,因此不支持真蔷薇I类分支的单系性。

结论

基于完整叶绿体基因组序列的DNA序列构建的系统发育树有力地支持了葡萄科作为蔷薇类最早分化谱系的位置。我们的系统发育分析支持了最近的论断,即在使用全叶绿体基因组进行系统发育重建时,分类群抽样不足和串联多基因数据集的模型设定错误会误导系统发育推断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d65e/1479384/b977c6b1f309/1471-2148-6-32-1.jpg

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