Contrasting trajectories of morphological diversification on continents and islands in the Afrotropical white‐eye radiation
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Published version
Author(s)
Day, Julia J
Martins, Frederico C
Tobias, Joseph A
Murrell, David J
Type
Journal Article
Abstract
Aim
Morphological and lineage evolution are predicted to follow different patterns in island and mainland radiations. However, the extent to which these geographical contexts influence evolutionary trajectories remains poorly understood, in part because few studies have focused on species‐rich clades colonizing continents and archipelagos over comparable timeframes. Focusing on a diverse songbird clade radiating on the African continent and adjacent islands, we tested whether morphological evolution is best explained by adaptive or non‐adaptive processes, and whether mainland and island lineages evolved to occupy different regions or volumes of morphological space (morphospace).
Location
Palaeotropics, with a particular focus on the Afrotropical region.
Taxon
White‐eyes, Zosterops (Aves: Zosteropidae).
Methods
We generated principal component axes from novel trait data for 120 species and combined this information with a comprehensive dated phylogeny. We then analysed the dynamics of trait and lineage diversification using comparative evolutionary methods.
Results
An early burst and slowdown pattern of lineage accumulation is not mirrored by phenotypic evolution, which instead shows an apparent convergence on particular phenotypes. However, the overall signature of phenotypic convergence is strongly driven by mainland taxa, in which phenotypes appear to be highly constrained within elevational zones, while speciation events are often associated with phenotypic divergence from one body plan to the other after colonization of highland from lowland habitats, or vice versa. By contrast, island lineages have repeatedly explored novel areas of morphospace with patterns of phenotypic divergence generally not distinguishable from a random‐walk model.
Main conclusions
Diversification of Zosterops highlights contrasting evolutionary trends and dynamics for continental versus island species. We suggest the different trajectory of evolution in insular lineages arises from reduced species competition leading to an increase in ecological opportunity, thereby providing a release to phenotypic constraints experienced by continental taxa.
Morphological and lineage evolution are predicted to follow different patterns in island and mainland radiations. However, the extent to which these geographical contexts influence evolutionary trajectories remains poorly understood, in part because few studies have focused on species‐rich clades colonizing continents and archipelagos over comparable timeframes. Focusing on a diverse songbird clade radiating on the African continent and adjacent islands, we tested whether morphological evolution is best explained by adaptive or non‐adaptive processes, and whether mainland and island lineages evolved to occupy different regions or volumes of morphological space (morphospace).
Location
Palaeotropics, with a particular focus on the Afrotropical region.
Taxon
White‐eyes, Zosterops (Aves: Zosteropidae).
Methods
We generated principal component axes from novel trait data for 120 species and combined this information with a comprehensive dated phylogeny. We then analysed the dynamics of trait and lineage diversification using comparative evolutionary methods.
Results
An early burst and slowdown pattern of lineage accumulation is not mirrored by phenotypic evolution, which instead shows an apparent convergence on particular phenotypes. However, the overall signature of phenotypic convergence is strongly driven by mainland taxa, in which phenotypes appear to be highly constrained within elevational zones, while speciation events are often associated with phenotypic divergence from one body plan to the other after colonization of highland from lowland habitats, or vice versa. By contrast, island lineages have repeatedly explored novel areas of morphospace with patterns of phenotypic divergence generally not distinguishable from a random‐walk model.
Main conclusions
Diversification of Zosterops highlights contrasting evolutionary trends and dynamics for continental versus island species. We suggest the different trajectory of evolution in insular lineages arises from reduced species competition leading to an increase in ecological opportunity, thereby providing a release to phenotypic constraints experienced by continental taxa.
Date Issued
2020-10
Date Acceptance
2020-05-07
Citation
Journal of Biogeography, 2020, 47 (10), pp.2235-2247
ISSN
0305-0270
Publisher
Wiley
Start Page
2235
End Page
2247
Journal / Book Title
Journal of Biogeography
Volume
47
Issue
10
Copyright Statement
© 2020 The Authors. Journal of Biogeography published by John Wiley & Sons Ltd.
This is an open access article under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
This is an open access article under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
License URL
Identifier
https://onlinelibrary.wiley.com/doi/full/10.1111/jbi.13917
Subjects
Science & Technology
Life Sciences & Biomedicine
Physical Sciences
Ecology
Geography, Physical
Environmental Sciences & Ecology
Physical Geography
competition
cryptic species
disparity-through-time
diversification
islands
morphological evolution
niche divergence
white-eyes
Zosterops
ADAPTIVE RADIATION
ECOLOGICAL OPPORTUNITY
PHENOTYPIC DIVERGENCE
PRINCIPAL COMPONENTS
CICHLID FISH
BODY-SIZE
R PACKAGE
EVOLUTION
AVES
SELECTION
Ecology
04 Earth Sciences
05 Environmental Sciences
06 Biological Sciences
Publication Status
Published
Article Number
jbi.13917
Date Publish Online
2020-07-08