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Ecomorphological and phylogenetic controls on sympatry across extant bats
Jeff J. Shi
, Erin P. Westeen
, Nathan T. Katlein
, Elizabeth R. Dumont
, Daniel L. Rabosky
Minnesota Supercomputing Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
11
Scopus citations
Overview
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Keyphrases
Phylogenetic Effect
100%
Biogeographic Realms
100%
Divergence
66%
Phylogenetic Divergence
66%
Morphological Divergence
66%
Speciation
33%
Gene Flow
33%
Environmental Factors
33%
Intrinsic Factors
33%
Extrinsic Factors
33%
Niche Differentiation
33%
Species Interactions
33%
Abiotic Factors
33%
Species Distribution
33%
Maximum Likelihood
33%
Ecological Processes
33%
Ecomorphological Divergence
33%
Phylogenetic Relatedness
33%
Evolutionary Process
33%
Species Boundaries
33%
Linear Mixed Modeling
33%
Ecological Divergence
33%
Neotropics
33%
Macroecological Patterns
33%
Ecological Differentiation
33%
Likelihood Model
33%
Chiroptera
33%
Global Radiation
33%
Neotropical Bats
33%
Model Simulation
33%
Broad Spatial Scale
33%
Agricultural and Biological Sciences
Sympatry
100%
Chiroptera
9%
Environmental Factor
9%
Gene Flow
9%
Likelihood
9%