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Rivero-Vega, R. A.

Publications and source records attributed to Rivero-Vega, R. A..

2 recordsLinked to original sources

bifrost: an R package for scalable inference of phylogenetic shifts in multivariate evolutionary dynamics

O_LIHigh-dimensional comparative datasets, including geometric morphometric landmarks, functional traits, and other large trait datasets, are increasingly common in biology. When these datasets include a large number of traits relative to the number of taxa, they pose significant challenges for phylogenetic comparative analysis. In addition, evolutionary dynamics are often heterogeneous across phylogenies, challenging researchers to develop tools that can localize and account for such variation when investigating hypotheses of evolutionary change. C_LIO_LIWe present bifrost, an R package for detecting and characterizing shifts in multivariate trait evolution across phylogenetic trees. bifrost implements a stepwise greedy search over alternative macroevolutionary regime configurations on a phylogeny. Candidate shifts are proposed and assessed at internal nodes, accelerated with parallel model fitting where possible, and aggregated sequentially when they exceed a user-defined information-criterion acceptance threshold. C_LIO_LIThe underlying model is a scalar-rate multivariate Brownian motion process fit by generalized least squares using mvMORPH::mvgls [1]. Our framework also provides support estimates for individual shifts using information-criterion weights. C_LIO_LIWe illustrate the workflow using a fossil-tip-dated phylogeny and high-dimensional landmark data for early bony fish jaws (32,508 scalar coordinate values), and discuss tuning, outputs, and limitations. bifrost extends existing phylogenetic comparative frameworks for evolutionary analysis and provides a scalable pipeline for exploring the phylogenetic natural history of large multivariate datasets. C_LI

evolutionary biology↗

Variable patterns of phenotypic evolution among canonical 'living fossil' lineages

Coelacanths, lungfishes, and holosteans represent three emblematic living fossil lineages, thought to be united by similar patterns of phenotypic change through time. While past studies suggest that diverse evolutionary patterns occur within these groups, it is unclear whether these reflect biological differences or arise from contrasting analytical approaches. Here, we examine these lineages under a common framework to assess variation in the evolution of discrete characters, and morphometric shape data, to test whether living fossils show comparable patterns of phenotypic evolution. Our results suggest different evolutionary modes occur, both among and within lineages, as a function of data type. For lungfishes, rates in discrete characters are highest in the Devonian and monotonically decline over time. Coelacanth rates show multiple early peaks followed by a decline toward the recent. Holostean rates show modest peaks but are broadly comparable over time. Patterns of body shape evolution also differ among clades, with strong support for declining rates over time for coelacanths but mixed evidence for similar dynamics in the other groups. Our results imply idiosyncratic processes of evolutionary change among traditional examples of living fossils and indicate a need to explicitly quantify patterns of change rather than apply informal, often qualitative, macroevolutionary classifications.

evolutionary biology↗