Natal foraging philopatry in eastern Pacific hawksbill turtles

The complex processes involved with animal migration have long been a subject of biological interest, and broad-scale movement patterns of many marine turtle populations still remain unresolved. While it is widely accepted that once marine turtles reach sexual maturity they home to natal areas for n...

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Published inRoyal Society open science Vol. 4; no. 8; p. 170153
Main Authors Gaos, Alexander R., Lewison, Rebecca L., Jensen, Michael P., Liles, Michael J., Henriquez, Ana, Chavarria, Sofia, Pacheco, Carlos Mario, Valle, Melissa, Melero, David, Gadea, Velkiss, Altamirano, Eduardo, Torres, Perla, Vallejo, Felipe, Miranda, Cristina, LeMarie, Carolina, Lucero, Jesus, Oceguera, Karen, Chácon, Didiher, Fonseca, Luis, Abrego, Marino, Seminoff, Jeffrey A., Flores, Eric E., Llamas, Israel, Donadi, Rodrigo, Peña, Bernardo, Muñoz, Juan Pablo, Ruales, Daniela Alarcòn, Chaves, Jaime A., Otterstrom, Sarah, Zavala, Alan, Hart, Catherine E., Brittain, Rachel, Alfaro-Shigueto, Joanna, Mangel, Jeffrey, Yañez, Ingrid L., Dutton, Peter H.
Format Journal Article
LanguageEnglish
Published England The Royal Society Publishing 01.08.2017
The Royal Society
Subjects
Online AccessGet full text
ISSN2054-5703
2054-5703
DOI10.1098/rsos.170153

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Abstract The complex processes involved with animal migration have long been a subject of biological interest, and broad-scale movement patterns of many marine turtle populations still remain unresolved. While it is widely accepted that once marine turtles reach sexual maturity they home to natal areas for nesting or reproduction, the role of philopatry to natal areas during other life stages has received less scrutiny, despite widespread evidence across the taxa. Here we report on genetic research that indicates that juvenile hawksbill turtles (Eretmochelys imbricata) in the eastern Pacific Ocean use foraging grounds in the region of their natal beaches, a pattern we term natal foraging philopatry. Our findings confirm that traditional views of natal homing solely for reproduction are incomplete and that many marine turtle species exhibit philopatry to natal areas to forage. Our results have important implications for life-history research and conservation of marine turtles and may extend to other wide-ranging marine vertebrates that demonstrate natal philopatry.
AbstractList The complex processes involved with animal migration have long been a subject of biological interest, and broad-scale movement patterns of many marine turtle populations still remain unresolved. While it is widely accepted that once marine turtles reach sexual maturity they home to natal areas for nesting or reproduction, the role of philopatry to natal areas during other life stages has received less scrutiny, despite widespread evidence across the taxa. Here we report on genetic research that indicates that juvenile hawksbill turtles (Eretmochelys imbricata) in the eastern Pacific Ocean use foraging grounds in the region of their natal beaches, a pattern we term natal foraging philopatry. Our findings confirm that traditional views of natal homing solely for reproduction are incomplete and that many marine turtle species exhibit philopatry to natal areas to forage. Our results have important implications for life-history research and conservation of marine turtles and may extend to other wide-ranging marine vertebrates that demonstrate natal philopatry.
The complex processes involved with animal migration have long been a subject of biological interest, and broad-scale movement patterns of many marine turtle populations still remain unresolved. While it is widely accepted that once marine turtles reach sexual maturity they home to natal areas for nesting or reproduction, the role of philopatry to natal areas during other life stages has received less scrutiny, despite widespread evidence across the taxa. Here we report on genetic research that indicates that juvenile hawksbill turtles ( Eretmochelys imbricata ) in the eastern Pacific Ocean use foraging grounds in the region of their natal beaches, a pattern we term natal foraging philopatry. Our findings confirm that traditional views of natal homing solely for reproduction are incomplete and that many marine turtle species exhibit philopatry to natal areas to forage. Our results have important implications for life-history research and conservation of marine turtles and may extend to other wide-ranging marine vertebrates that demonstrate natal philopatry.
The complex processes involved with animal migration have long been a subject of biological interest, and broad-scale movement patterns of many marine turtle populations still remain unresolved. While it is widely accepted that once marine turtles reach sexual maturity they home to natal areas for nesting or reproduction, the role of philopatry to natal areas during other life stages has received less scrutiny, despite widespread evidence across the taxa. Here we report on genetic research that indicates that juvenile hawksbill turtles ( ) in the eastern Pacific Ocean use foraging grounds in the region of their natal beaches, a pattern we term natal foraging philopatry. Our findings confirm that traditional views of natal homing solely for reproduction are incomplete and that many marine turtle species exhibit philopatry to natal areas to forage. Our results have important implications for life-history research and conservation of marine turtles and may extend to other wide-ranging marine vertebrates that demonstrate natal philopatry.
The complex processes involved with animal migration have long been a subject of biological interest, and broad-scale movement patterns of many marine turtle populations still remain unresolved. While it is widely accepted that once marine turtles reach sexual maturity they home to natal areas for nesting or reproduction, the role of philopatry to natal areas during other life stages has received less scrutiny, despite widespread evidence across the taxa. Here we report on genetic research that indicates that juvenile hawksbill turtles (Eretmochelys imbricata) in the eastern Pacific Ocean use foraging grounds in the region of their natal beaches, a pattern we term natal foraging philopatry. Our findings confirm that traditional views of natal homing solely for reproduction are incomplete and that many marine turtle species exhibit philopatry to natal areas to forage. Our results have important implications for life-history research and conservation of marine turtles and may extend to other wide-ranging marine vertebrates that demonstrate natal philopatry.The complex processes involved with animal migration have long been a subject of biological interest, and broad-scale movement patterns of many marine turtle populations still remain unresolved. While it is widely accepted that once marine turtles reach sexual maturity they home to natal areas for nesting or reproduction, the role of philopatry to natal areas during other life stages has received less scrutiny, despite widespread evidence across the taxa. Here we report on genetic research that indicates that juvenile hawksbill turtles (Eretmochelys imbricata) in the eastern Pacific Ocean use foraging grounds in the region of their natal beaches, a pattern we term natal foraging philopatry. Our findings confirm that traditional views of natal homing solely for reproduction are incomplete and that many marine turtle species exhibit philopatry to natal areas to forage. Our results have important implications for life-history research and conservation of marine turtles and may extend to other wide-ranging marine vertebrates that demonstrate natal philopatry.
Author Lewison, Rebecca L.
Mangel, Jeffrey
Donadi, Rodrigo
Zavala, Alan
Yañez, Ingrid L.
Abrego, Marino
Muñoz, Juan Pablo
Pacheco, Carlos Mario
Valle, Melissa
Peña, Bernardo
Oceguera, Karen
Chaves, Jaime A.
Lucero, Jesus
Gadea, Velkiss
Dutton, Peter H.
Melero, David
Seminoff, Jeffrey A.
Chavarria, Sofia
Otterstrom, Sarah
Henriquez, Ana
LeMarie, Carolina
Llamas, Israel
Gaos, Alexander R.
Miranda, Cristina
Ruales, Daniela Alarcòn
Torres, Perla
Alfaro-Shigueto, Joanna
Jensen, Michael P.
Hart, Catherine E.
Vallejo, Felipe
Altamirano, Eduardo
Fonseca, Luis
Liles, Michael J.
Chácon, Didiher
Brittain, Rachel
Flores, Eric E.
AuthorAffiliation 17 Marine Ecology Department, Universidad San Francisco de Quito/Galapagos Science Center , San Cristóbal, Galapagos Archipelago , Ecuador
2 Graduate Group in Ecology, University of California Davis , Davis, CA , USA
13 Sistema Nacional de Investigación , Panama City , Panama
14 Instituto de Investigaciones Científicas y Servicios de Alta Tecnología , Panama City , Panama
20 Instituto Politécnico Nacional , Sinaloa , Mexico
8 Equilibrio Azul , Quito , Ecuador
9 Grupo Tortuguero de las Californias, A.C , La Paz , Mexico
7 Instituto de Ciencias del Mar y Limnología, Unidad Académica Mazatlán, Universidad Nacional de Mexico , Mazatlán , Mexico
26 Eastern Pacific Hawksbill Initiative , San Diego, CA , USA
6 Marine Turtles Department, Fauna & Flora International , Managua , Nicaragua
10 Latin American Sea Turtles , Tibás , Costa Rica
21 Red Tortuguera, A.C , Guayabitos , Mexico
1 Department of Biology, San Diego State University , San Diego, CA , USA
19 Unidad Sinaloa, Centro Interdisciplinario de Inves
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  organization: Marine Mammal and Turtle Division, Southwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, La Jolla, CA, USA
BackLink https://www.ncbi.nlm.nih.gov/pubmed/28878969$$D View this record in MEDLINE/PubMed
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Issue 8
Keywords hatchling dispersal
juvenile
spatial ecology
life history
conservation genetics
natal homing
Language English
License open-access: Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
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Electronic supplementary material is available online at https://dx.doi.org/10.6084/m9.figshare.c.3852109.
Present address: 4314 Dalles Court, San Diego, CA 92117, USA.
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Snippet The complex processes involved with animal migration have long been a subject of biological interest, and broad-scale movement patterns of many marine turtle...
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SubjectTerms Conservation Genetics
Genetics
Hatchling Dispersal
Juvenile
Life History
Natal Homing
Spatial Ecology
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Title Natal foraging philopatry in eastern Pacific hawksbill turtles
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