Phylogenetic Inference of Reciprocal Effects between Geographic Range Evolution and Diversification
Author(s) -
Emma E. Goldberg,
Lesley T. Lancaster,
Richard H. Ree
Publication year - 2011
Publication title -
systematic biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.128
H-Index - 182
eISSN - 1076-836X
pISSN - 1063-5157
DOI - 10.1093/sysbio/syr046
Subject(s) - biology , evolutionary biology , phylogenetic comparative methods , genetic algorithm , phylogenetic tree , occupancy , ecology , range (aeronautics) , phylogenetics , lineage (genetic) , niche , genetics , materials science , composite material , gene
Geographic characters--traits describing the spatial distribution of a species-may both affect and be affected by processes associated with lineage birth and death. This is potentially confounding to comparative analyses of species distributions because current models do not allow reciprocal interactions between the evolution of ranges and the growth of phylogenetic trees. Here, we introduce a likelihood-based approach to estimating region-dependent rates of speciation, extinction, and range evolution from a phylogeny, using a new model in which these processes are interdependent. We demonstrate the method with simulation tests that accurately recover parameters relating to the mode of speciation and source-sink dynamics. We then apply it to the evolution of habitat occupancy in Californian plant communities, where we find higher rates of speciation in chaparral than in forests and evidence for expanding habitat tolerances.
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