Gugerli F, Sperisen C, Büchler U, Brunner I, Brodbeck S, Palmer J D, Qiu Y L
WSL Eidgenössische Forschungsanstalt, Zürcherstrasse 111, CH-8903 Birmensdorf, Switzerland.
Mol Phylogenet Evol. 2001 Nov;21(2):167-75. doi: 10.1006/mpev.2001.1004.
The second intron in the mitochondrial gene nad1 was surveyed using PCR, DNA sequencing, or Southern hybridization in 323 species (313 genera, 212 families) of seed plants. The intron was absent in all 22 species (22 genera, 8 families) of non-Pinaceae conifers studied, in Welwitschia mirabilis, and in seven angiosperms. Whereas absence of the intron in seven angiosperms and Welwitschia is likely due to seven independent losses when evaluated against the recently published multigene phylogenies, the lack of the intron in all non-Pinaceae conifers can be best explained by a single loss. These data suggest that the non-Pinaceae conifers represent a monophyletic group. We also conducted a phylogenetic analysis of seed plants using a combined data set of the partial exon and intron sequences of nad1 generated from this study and published sequences of mitochondrial cox1 and small subunit (SSU) rDNA, chloroplast rbcL, and nuclear 18S rDNA. The results supported the split of conifers into two groups: Pinaceae and non-Pinaceae conifers. The Gnetales were sister to Pinaceae, in agreement with the conclusion from other recent molecular phylogenetic studies that refute the anthophyte hypothesis.
利用聚合酶链式反应(PCR)、DNA测序或Southern杂交技术,对323种(313属,212科)种子植物的线粒体基因nad1中的第二个内含子进行了研究。在所研究的22种(22属,8科)非松科针叶树、百岁兰以及7种被子植物中,均未发现该内含子。根据最近发表的多基因系统发育树进行评估,7种被子植物和百岁兰中该内含子的缺失可能是由于7次独立丢失所致,而所有非松科针叶树中该内含子的缺失则最有可能是由于一次丢失事件造成的。这些数据表明,非松科针叶树代表一个单系类群。我们还利用本研究生成的nad1部分外显子和内含子序列与已发表的线粒体细胞色素氧化酶亚基I(cox1)、小亚基(SSU)核糖体DNA(rDNA)、叶绿体核酮糖-1,5-二磷酸羧化酶/加氧酶(rbcL)以及核18S rDNA序列的组合数据集,对种子植物进行了系统发育分析。结果支持针叶树分为两组:松科和非松科针叶树。买麻藤目是松科的姐妹群,这与其他近期分子系统发育研究得出的反驳被子植物假说的结论一致。