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      Speciation dynamics during the global radiation of extant bats.

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          Abstract

          Species richness varies widely across extant clades, but the causes of this variation remain poorly understood. We investigate the role of diversification rate heterogeneity in shaping patterns of diversity across families of extant bats. To provide a robust framework for macroevolutionary inference, we assemble a time-calibrated, species-level phylogeny using a supermatrix of mitochondrial and nuclear sequence data. We analyze the phylogeny using a Bayesian method for modeling complex evolutionary dynamics. Surprisingly, we find that variation in family richness can largely be explained without invoking heterogeneous diversification dynamics. We document only a single well-supported shift in diversification dynamics across bats, occurring at the base of the subfamily Stenodermatinae. Bat diversity is phylogenetically imbalanced, but-contrary to previous hypotheses-this pattern is unexplained by any simple patterns of diversification rate heterogeneity. This discordance may indicate that diversification dynamics are more complex than can be captured using the statistical tools available for modeling data at this scale. We infer that bats as a whole are almost entirely united into one macroevolutionary cohort, with decelerating speciation through time. There is also a significant relationship between clade age and richness, suggesting that global bat diversity may still be expanding.

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          Author and article information

          Journal
          Evolution
          Evolution; international journal of organic evolution
          Wiley-Blackwell
          1558-5646
          0014-3820
          Jun 2015
          : 69
          : 6
          Affiliations
          [1 ] Department of Ecology and Evolutionary Biology and Museum of Zoology, University of Michigan, Ann Arbor, Michigan, 48109. jeffjshi@umich.edu.
          [2 ] Department of Ecology and Evolutionary Biology and Museum of Zoology, University of Michigan, Ann Arbor, Michigan, 48109.
          Article
          10.1111/evo.12681
          25958922
          881cff34-6e3c-4f4b-9df5-6927613bc3d5
          History

          BAMM,Chiroptera,diversification rates,macroevolution,phylogenetic imbalance

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