School of Life Sciences, Fudan University, Shanghai, China.
Mol Biol Evol. 2010 Dec;27(12):2855-63. doi: 10.1093/molbev/msq170. Epub 2010 Jul 2.
The phylogenetic position of Gnetales is one of the most contentious issues in the seed plant systematics. To elucidate the Gnetales position, an improved amino acid substitution matrix was estimated based on 64 chloroplast (cp) genomes and was applied to cp genome data including all three lineages of Gnetales in maximum likelihood analyses of proteins. Although the initial analysis strongly supported the sister relation of Gnetales with Cryptomeria (Cupressophyta or non-Pinaceae conifers) (the "Gnecup" hypothesis), the support seems to be caused by a long-branch attraction (LBA) artifact. Indeed, by removing fastest evolving proteins that are most likely associated with the LBA, the support drastically declined. Furthermore, another analysis of partial genome data with dense taxon sampling of conifers showed that, in psbC, rpl2, and rps7 proteins, there are many parallel amino acid substitutions between the lineages leading to Gnetales and to Cryptomeria, and by further excluding these three genes, the sister relation of Gnetales with Pinaceae (the "Gnepine" hypothesis) became supported. Overall, our analyses indicate that the LBA and parallel substitutions cause a seriously biased inference of phylogenetic position of Gnetales with the cp genome data.
买麻藤纲的系统发育位置是种子植物系统学中最具争议的问题之一。为了阐明买麻藤纲的位置,我们根据 64 个叶绿体(cp)基因组估计了一个改进的氨基酸取代矩阵,并将其应用于 cp 基因组数据,包括最大似然分析中的买麻藤纲的三个谱系中的所有蛋白质。尽管最初的分析强烈支持买麻藤纲与翠柏(苏铁纲或非松科针叶树)(“Gnecup”假说)的姐妹关系,但这种支持似乎是由长枝吸引(LBA)artifact 引起的。事实上,通过去除最有可能与 LBA 相关的进化最快的蛋白质,支持率急剧下降。此外,对具有密集分类群采样的针叶树部分基因组数据的另一个分析表明,在 psbC、rpl2 和 rps7 蛋白中,导致买麻藤纲和翠柏的谱系之间存在许多平行的氨基酸取代,并且通过进一步排除这三个基因,买麻藤纲与松科(“Gnepine”假说)的姐妹关系得到了支持。总的来说,我们的分析表明,LBA 和并行取代导致了 cp 基因组数据中对买麻藤纲系统发育位置的严重偏差推断。