Schuettpelz Eric, Pryer Kathleen M
Department of Biology, Duke University, Durham, North Carolina 27708, USA.
Syst Biol. 2006 Jun;55(3):485-502. doi: 10.1080/10635150600755438.
The rate of molecular evolution is not constant across the Tree of Life. Characterizing rate discrepancies and evaluating the relative roles of time and rate along branches through the past are both critical to a full understanding of evolutionary history. In this study, we explore the interactions of time and rate in filmy ferns (Hymenophyllaceae), a lineage with extreme branch length differences between the two major clades. We test for the presence of significant rate discrepancies within and between these clades, and we separate time and rate across the filmy fern phylogeny to simultaneously yield an evolutionary time scale of filmy fern diversification and reconstructions of ancestral rates of molecular evolution. Our results indicate that the branch length disparity observed between the major lineages of filmy ferns is indeed due to a significant difference in molecular evolutionary rate. The estimation of divergence times reveals that the timing of crown group diversification was not concurrent for the two lineages, and the reconstruction of ancestral rates of molecular evolution points to a substantial rate deceleration in one of the clades. Further analysis suggests that this may be due to a genome-wide deceleration in the rate of nucleotide substitution.
分子进化速率在整个生命之树上并非恒定不变。表征速率差异并评估过去沿分支的时间和速率的相对作用,对于全面理解进化历史都至关重要。在本研究中,我们探究了膜蕨科(Hymenophyllaceae)中时间和速率的相互作用,该类群的两个主要分支之间存在极大的分支长度差异。我们测试了这些分支内部和之间是否存在显著的速率差异,并在膜蕨系统发育中区分时间和速率,以同时得出膜蕨多样化的进化时间尺度以及分子进化祖先速率的重建。我们的结果表明,膜蕨主要谱系之间观察到的分支长度差异确实是由于分子进化速率的显著差异所致。分歧时间的估计表明,两个谱系的冠群多样化时间并不一致,分子进化祖先速率的重建表明其中一个分支存在显著的速率减速。进一步分析表明,这可能是由于全基因组核苷酸替换速率的减速所致。