Institute of Molecular Biosciences, Massey University, Palmerston North, New Zealand.
Genome Biol Evol. 2011;3:1340-8. doi: 10.1093/gbe/evr105. Epub 2011 Oct 19.
Resolving the closest relatives of Gnetales has been an enigmatic problem in seed plant phylogeny. The problem is known to be difficult because of the extent of divergence between this diverse group of gymnosperms and their closest phylogenetic relatives. Here, we investigate the evolutionary properties of conifer chloroplast DNA sequences. To improve taxon sampling of Cupressophyta (non-Pinaceae conifers), we report sequences from three new chloroplast (cp) genomes of Southern Hemisphere conifers. We have applied a site pattern sorting criterion to study compositional heterogeneity, heterotachy, and the fit of conifer chloroplast genome sequences to a general time reversible + G substitution model. We show that non-time reversible properties of aligned sequence positions in the chloroplast genomes of Gnetales mislead phylogenetic reconstruction of these seed plants. When 2,250 of the most varied sites in our concatenated alignment are excluded, phylogenetic analyses favor a close evolutionary relationship between the Gnetales and Pinaceae-the Gnepine hypothesis. Our analytical protocol provides a useful approach for evaluating the robustness of phylogenomic inferences. Our findings highlight the importance of goodness of fit between substitution model and data for understanding seed plant phylogeny.
解决买麻藤目植物在种子植物系统发育中的最近亲缘关系一直是一个谜。众所周知,这个多样化的裸子植物群体与其最近的系统发育亲缘关系之间的分歧程度很大,因此这个问题很难解决。在这里,我们研究了松柏类植物叶绿体 DNA 序列的进化特征。为了提高柏科植物(非松科松柏类植物)的分类采样,我们报告了三个新的南半球松柏类植物叶绿体基因组的序列。我们应用了一个位点模式分类标准来研究组成异质性、异时性和松柏类植物叶绿体基因组序列与一般时间可逆+G 取代模型的拟合程度。我们表明,买麻藤目植物叶绿体基因组中对齐序列位置的非时间可逆特性会误导这些种子植物的系统发育重建。当排除我们串联比对中最具变异性的 2250 个位点时,系统发育分析支持买麻藤目植物和松科植物之间具有密切的进化关系,即买麻藤目-松科假说。我们的分析方案为评估基因组学推断的稳健性提供了一种有用的方法。我们的研究结果强调了替代模型与数据之间拟合程度对理解种子植物系统发育的重要性。