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The genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalFACS

Ecological flexibility, extended lifespans, and large brains have long intrigued evolutionary biologists, and comparative genomics offers an efficient and effective tool for generating new insights into the evolution of such traits. Studies of capuchin monkeys are particularly well situated to shed...

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Autores principales: Orkin, Joseph D., Montague, Michael J., Tejada-Martinez, Daniela, de Manuel, Marc, del Campo, Javier, Cheves Hernandez, Saul, Di Fiore, Anthony, Fontsere, Claudia, Hodgson, Jason A., Janiak, Mareike C., Kuderna, Lukas F. K., Lizano, Esther, Martin, Maria Pia, Niimura, Yoshihito, Perry, George H., Valverde, Carmen Soto, Tang, Jia, Warren, Wesley C., de Magalhães, João Pedro, Kawamura, Shoji, Marquès-Bonet, Tomàs, Krawetz, Roman, Melin, Amanda D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7896301/
https://www.ncbi.nlm.nih.gov/pubmed/33574059
http://dx.doi.org/10.1073/pnas.2010632118
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author Orkin, Joseph D.
Montague, Michael J.
Tejada-Martinez, Daniela
de Manuel, Marc
del Campo, Javier
Cheves Hernandez, Saul
Di Fiore, Anthony
Fontsere, Claudia
Hodgson, Jason A.
Janiak, Mareike C.
Kuderna, Lukas F. K.
Lizano, Esther
Martin, Maria Pia
Niimura, Yoshihito
Perry, George H.
Valverde, Carmen Soto
Tang, Jia
Warren, Wesley C.
de Magalhães, João Pedro
Kawamura, Shoji
Marquès-Bonet, Tomàs
Krawetz, Roman
Melin, Amanda D.
author_facet Orkin, Joseph D.
Montague, Michael J.
Tejada-Martinez, Daniela
de Manuel, Marc
del Campo, Javier
Cheves Hernandez, Saul
Di Fiore, Anthony
Fontsere, Claudia
Hodgson, Jason A.
Janiak, Mareike C.
Kuderna, Lukas F. K.
Lizano, Esther
Martin, Maria Pia
Niimura, Yoshihito
Perry, George H.
Valverde, Carmen Soto
Tang, Jia
Warren, Wesley C.
de Magalhães, João Pedro
Kawamura, Shoji
Marquès-Bonet, Tomàs
Krawetz, Roman
Melin, Amanda D.
author_sort Orkin, Joseph D.
collection PubMed
description Ecological flexibility, extended lifespans, and large brains have long intrigued evolutionary biologists, and comparative genomics offers an efficient and effective tool for generating new insights into the evolution of such traits. Studies of capuchin monkeys are particularly well situated to shed light on the selective pressures and genetic underpinnings of local adaptation to diverse habitats, longevity, and brain development. Distributed widely across Central and South America, they are inventive and extractive foragers, known for their sensorimotor intelligence. Capuchins have among the largest relative brain size of any monkey and a lifespan that exceeds 50 y, despite their small (3 to 5 kg) body size. We assemble and annotate a de novo reference genome for Cebus imitator. Through high-depth sequencing of DNA derived from blood, various tissues, and feces via fluorescence-activated cell sorting (fecalFACS) to isolate monkey epithelial cells, we compared genomes of capuchin populations from tropical dry forests and lowland rainforests and identified population divergence in genes involved in water balance, kidney function, and metabolism. Through a comparative genomics approach spanning a wide diversity of mammals, we identified genes under positive selection associated with longevity and brain development. Additionally, we provide a technological advancement in the use of noninvasive genomics for studies of free-ranging mammals. Our intra- and interspecific comparative study of capuchin genomics provides insights into processes underlying local adaptation to diverse and physiologically challenging environments, as well as the molecular basis of brain evolution and longevity.
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spelling pubmed-78963012021-02-24 The genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalFACS Orkin, Joseph D. Montague, Michael J. Tejada-Martinez, Daniela de Manuel, Marc del Campo, Javier Cheves Hernandez, Saul Di Fiore, Anthony Fontsere, Claudia Hodgson, Jason A. Janiak, Mareike C. Kuderna, Lukas F. K. Lizano, Esther Martin, Maria Pia Niimura, Yoshihito Perry, George H. Valverde, Carmen Soto Tang, Jia Warren, Wesley C. de Magalhães, João Pedro Kawamura, Shoji Marquès-Bonet, Tomàs Krawetz, Roman Melin, Amanda D. Proc Natl Acad Sci U S A Biological Sciences Ecological flexibility, extended lifespans, and large brains have long intrigued evolutionary biologists, and comparative genomics offers an efficient and effective tool for generating new insights into the evolution of such traits. Studies of capuchin monkeys are particularly well situated to shed light on the selective pressures and genetic underpinnings of local adaptation to diverse habitats, longevity, and brain development. Distributed widely across Central and South America, they are inventive and extractive foragers, known for their sensorimotor intelligence. Capuchins have among the largest relative brain size of any monkey and a lifespan that exceeds 50 y, despite their small (3 to 5 kg) body size. We assemble and annotate a de novo reference genome for Cebus imitator. Through high-depth sequencing of DNA derived from blood, various tissues, and feces via fluorescence-activated cell sorting (fecalFACS) to isolate monkey epithelial cells, we compared genomes of capuchin populations from tropical dry forests and lowland rainforests and identified population divergence in genes involved in water balance, kidney function, and metabolism. Through a comparative genomics approach spanning a wide diversity of mammals, we identified genes under positive selection associated with longevity and brain development. Additionally, we provide a technological advancement in the use of noninvasive genomics for studies of free-ranging mammals. Our intra- and interspecific comparative study of capuchin genomics provides insights into processes underlying local adaptation to diverse and physiologically challenging environments, as well as the molecular basis of brain evolution and longevity. National Academy of Sciences 2021-02-16 2021-02-11 /pmc/articles/PMC7896301/ /pubmed/33574059 http://dx.doi.org/10.1073/pnas.2010632118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Orkin, Joseph D.
Montague, Michael J.
Tejada-Martinez, Daniela
de Manuel, Marc
del Campo, Javier
Cheves Hernandez, Saul
Di Fiore, Anthony
Fontsere, Claudia
Hodgson, Jason A.
Janiak, Mareike C.
Kuderna, Lukas F. K.
Lizano, Esther
Martin, Maria Pia
Niimura, Yoshihito
Perry, George H.
Valverde, Carmen Soto
Tang, Jia
Warren, Wesley C.
de Magalhães, João Pedro
Kawamura, Shoji
Marquès-Bonet, Tomàs
Krawetz, Roman
Melin, Amanda D.
The genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalFACS
title The genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalFACS
title_full The genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalFACS
title_fullStr The genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalFACS
title_full_unstemmed The genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalFACS
title_short The genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalFACS
title_sort genomics of ecological flexibility, large brains, and long lives in capuchin monkeys revealed with fecalfacs
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7896301/
https://www.ncbi.nlm.nih.gov/pubmed/33574059
http://dx.doi.org/10.1073/pnas.2010632118
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