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Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution

Dietary adaptation is a major feature of phenotypic and ecological diversification, yet the genetic basis of dietary shifts is poorly understood. Among mammals, Neotropical leaf-nosed bats (family Phyllostomidae) show unmatched diversity in diet; from a putative insectivorous ancestor, phyllostomids...

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Autores principales: Potter, Joshua H T, Davies, Kalina T J, Yohe, Laurel R, Sanchez, Miluska K R, Rengifo, Edgardo M, Struebig, Monika, Warren, Kim, Tsagkogeorga, Georgia, Lim, Burton K, dos Reis, Mario, Dávalos, Liliana M, Rossiter, Stephen J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8382914/
https://www.ncbi.nlm.nih.gov/pubmed/34426843
http://dx.doi.org/10.1093/molbev/msab028
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author Potter, Joshua H T
Davies, Kalina T J
Yohe, Laurel R
Sanchez, Miluska K R
Rengifo, Edgardo M
Struebig, Monika
Warren, Kim
Tsagkogeorga, Georgia
Lim, Burton K
dos Reis, Mario
Dávalos, Liliana M
Rossiter, Stephen J
author_facet Potter, Joshua H T
Davies, Kalina T J
Yohe, Laurel R
Sanchez, Miluska K R
Rengifo, Edgardo M
Struebig, Monika
Warren, Kim
Tsagkogeorga, Georgia
Lim, Burton K
dos Reis, Mario
Dávalos, Liliana M
Rossiter, Stephen J
author_sort Potter, Joshua H T
collection PubMed
description Dietary adaptation is a major feature of phenotypic and ecological diversification, yet the genetic basis of dietary shifts is poorly understood. Among mammals, Neotropical leaf-nosed bats (family Phyllostomidae) show unmatched diversity in diet; from a putative insectivorous ancestor, phyllostomids have radiated to specialize on diverse food sources including blood, nectar, and fruit. To assess whether dietary diversification in this group was accompanied by molecular adaptations for changing metabolic demands, we sequenced 89 transcriptomes across 58 species and combined these with published data to compare ∼13,000 protein coding genes across 66 species. We tested for positive selection on focal lineages, including those inferred to have undergone dietary shifts. Unexpectedly, we found a broad signature of positive selection in the ancestral phyllostomid branch, spanning genes implicated in the metabolism of all major macronutrients, yet few positively selected genes at the inferred switch to plantivory. Branches corresponding to blood- and nectar-based diets showed selection in loci underpinning nitrogenous waste excretion and glycolysis, respectively. Intriguingly, patterns of selection in metabolism genes were mirrored by those in loci implicated in craniofacial remodeling, a trait previously linked to phyllostomid dietary specialization. Finally, we show that the null model of the widely-used branch-site test is likely to be misspecified, with the implication that the test is too conservative and probably under-reports true cases of positive selection. Our findings point to a complex picture of adaptive radiation, in which the evolution of new dietary specializations has been facilitated by early adaptations combined with the generation of new genetic variation.
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spelling pubmed-83829142021-08-25 Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution Potter, Joshua H T Davies, Kalina T J Yohe, Laurel R Sanchez, Miluska K R Rengifo, Edgardo M Struebig, Monika Warren, Kim Tsagkogeorga, Georgia Lim, Burton K dos Reis, Mario Dávalos, Liliana M Rossiter, Stephen J Mol Biol Evol Discoveries Dietary adaptation is a major feature of phenotypic and ecological diversification, yet the genetic basis of dietary shifts is poorly understood. Among mammals, Neotropical leaf-nosed bats (family Phyllostomidae) show unmatched diversity in diet; from a putative insectivorous ancestor, phyllostomids have radiated to specialize on diverse food sources including blood, nectar, and fruit. To assess whether dietary diversification in this group was accompanied by molecular adaptations for changing metabolic demands, we sequenced 89 transcriptomes across 58 species and combined these with published data to compare ∼13,000 protein coding genes across 66 species. We tested for positive selection on focal lineages, including those inferred to have undergone dietary shifts. Unexpectedly, we found a broad signature of positive selection in the ancestral phyllostomid branch, spanning genes implicated in the metabolism of all major macronutrients, yet few positively selected genes at the inferred switch to plantivory. Branches corresponding to blood- and nectar-based diets showed selection in loci underpinning nitrogenous waste excretion and glycolysis, respectively. Intriguingly, patterns of selection in metabolism genes were mirrored by those in loci implicated in craniofacial remodeling, a trait previously linked to phyllostomid dietary specialization. Finally, we show that the null model of the widely-used branch-site test is likely to be misspecified, with the implication that the test is too conservative and probably under-reports true cases of positive selection. Our findings point to a complex picture of adaptive radiation, in which the evolution of new dietary specializations has been facilitated by early adaptations combined with the generation of new genetic variation. Oxford University Press 2021-03-04 /pmc/articles/PMC8382914/ /pubmed/34426843 http://dx.doi.org/10.1093/molbev/msab028 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Discoveries
Potter, Joshua H T
Davies, Kalina T J
Yohe, Laurel R
Sanchez, Miluska K R
Rengifo, Edgardo M
Struebig, Monika
Warren, Kim
Tsagkogeorga, Georgia
Lim, Burton K
dos Reis, Mario
Dávalos, Liliana M
Rossiter, Stephen J
Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution
title Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution
title_full Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution
title_fullStr Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution
title_full_unstemmed Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution
title_short Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution
title_sort dietary diversification and specialization in neotropical bats facilitated by early molecular evolution
topic Discoveries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8382914/
https://www.ncbi.nlm.nih.gov/pubmed/34426843
http://dx.doi.org/10.1093/molbev/msab028
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