Intense natural selection preceded the invasion of new adaptive zones during the radiation of New World leaf-nosed bats

Fuente: Zenodo
Salvato in:
Dettagli Bibliografici
Autori principali: Rossoni, Daniela M., Assis, Ana Paula A., Giannini, Norberto P., Marroig, Gabriel
Natura: Recurso digital
Pubblicazione: Zenodo 2017
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866902035574554624
author Rossoni, Daniela M.
Assis, Ana Paula A.
Giannini, Norberto P.
Marroig, Gabriel
author_facet Rossoni, Daniela M.
Assis, Ana Paula A.
Giannini, Norberto P.
Marroig, Gabriel
contents (Uploaded by Plazi for the Bat Literature Project) Abstract The family Phyllostomidae, which evolved in the New World during the last 30 million years, represents one of the largest and most morphologically diverse mammal families. Due to its uniquely diverse functional morphology, the phyllostomid skull is presumed to have evolved under strong directional selection; however, quantitative estimation of the strength of selection in this extraordinary lineage has not been reported. Here, we used comparative quantitative genetics approaches to elucidate the processes that drove cranial evolution in phyllostomids. We also quantified the strength of selection and explored its association with dietary transitions and specialization along the phyllostomid phylogeny. Our results suggest that natural selection was the evolutionary process responsible for cranial diversification in phyllostomid bats. Remarkably, the strongest selection in the phyllostomid phylogeny was associated with dietary specialization and the origination of novel feeding habits, suggesting that the adaptive diversification of phyllostomid bats was triggered by ecological opportunities. These findings are consistent with Simpson's quantum evolutionary model of transitions between adaptive zones. The multivariate analyses used in this study provides a powerful tool for understanding the role of evolutionary processes in shaping phenotypic diversity in any group on both micro- and macroevolutionary scales.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_13425000
institution Zenodo
language
publishDate 2017
publisher Zenodo
record_format zenodo
spellingShingle Intense natural selection preceded the invasion of new adaptive zones during the radiation of New World leaf-nosed bats
Rossoni, Daniela M.
Assis, Ana Paula A.
Giannini, Norberto P.
Marroig, Gabriel
Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
(Uploaded by Plazi for the Bat Literature Project) Abstract The family Phyllostomidae, which evolved in the New World during the last 30 million years, represents one of the largest and most morphologically diverse mammal families. Due to its uniquely diverse functional morphology, the phyllostomid skull is presumed to have evolved under strong directional selection; however, quantitative estimation of the strength of selection in this extraordinary lineage has not been reported. Here, we used comparative quantitative genetics approaches to elucidate the processes that drove cranial evolution in phyllostomids. We also quantified the strength of selection and explored its association with dietary transitions and specialization along the phyllostomid phylogeny. Our results suggest that natural selection was the evolutionary process responsible for cranial diversification in phyllostomid bats. Remarkably, the strongest selection in the phyllostomid phylogeny was associated with dietary specialization and the origination of novel feeding habits, suggesting that the adaptive diversification of phyllostomid bats was triggered by ecological opportunities. These findings are consistent with Simpson's quantum evolutionary model of transitions between adaptive zones. The multivariate analyses used in this study provides a powerful tool for understanding the role of evolutionary processes in shaping phenotypic diversity in any group on both micro- and macroevolutionary scales.
title Intense natural selection preceded the invasion of new adaptive zones during the radiation of New World leaf-nosed bats
topic Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
url https://doi.org/10.5281/zenodo.13425000