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ABRUPT DECELERATION OF MOLECULAR EVOLUTION LINKED TO THE ORIGIN OF ARBORESCENCE IN FERNS
Authors:Petra Korall  Eric Schuettpelz  Kathleen M Pryer
Institution:1. Department of Biology, Duke University, Durham, North Carolina 27708;2. Department of Phanerogamic Botany, Swedish Museum of Natural History, SE‐104 05 Stockholm, Sweden;3. Department of Botany, Stockholm University, SE‐106 91 Stockholm, Sweden;4. E‐mail: petra.korall@ebc.uu.se;5. Current address: Systematic Biology, Evolutionary Biology Centre, Uppsala University, Norbyv?gen 18D, SE‐752 36 Uppsala, Sweden.;6. National Evolutionary Synthesis Center, 2024 West Main St., Suite A200, Durham, North Carolina 27705;7. E‐mail: eschuettpelz@nescent.org;8. E‐mail: pryer@duke.edu
Abstract:Molecular rate heterogeneity, whereby rates of molecular evolution vary among groups of organisms, is a well‐documented phenomenon. Nonetheless, its causes are poorly understood. For animals, generation time is frequently cited because longer‐lived species tend to have slower rates of molecular evolution than their shorter‐lived counterparts. Although a similar pattern has been uncovered in flowering plants, using proxies such as growth form, the underlying process has remained elusive. Here, we find a deceleration of molecular evolutionary rate to be coupled with the origin of arborescence in ferns. Phylogenetic branch lengths within the “tree fern” clade are considerably shorter than those of closely related lineages, and our analyses demonstrate that this is due to a significant difference in molecular evolutionary rate. Reconstructions reveal that an abrupt rate deceleration coincided with the evolution of the long‐lived tree‐like habit at the base of the tree fern clade. This suggests that a generation time effect may well be ubiquitous across the green tree of life, and that the search for a responsible mechanism must focus on characteristics shared by all vascular plants. Discriminating among the possibilities will require contributions from various biological disciplines, but will be necessary for a full appreciation of molecular evolution.
Keywords:Generation time  leptosporangiates  life history  molecular rate heterogeneity  tree ferns
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