Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina )
Currents are unique drivers of oceanic phylogeography and thus determine the distribution of marine coastal species, along with past glaciations and sea-level changes. Here we reconstruct the worldwide colonization history of eelgrass (Zostera marina L.), the most widely distributed marine flowering...
Published in: | Nature Plants |
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Online Access: | https://hdl.handle.net/11370/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d https://research.rug.nl/en/publications/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d https://doi.org/10.1038/s41477-023-01464-3 https://pure.rug.nl/ws/files/894444573/s41477-023-01464-3.pdf http://www.scopus.com/inward/record.url?scp=85165131390&partnerID=8YFLogxK |
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ftunigroningenpu:oai:pure.rug.nl:publications/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d 2024-09-09T19:25:49+00:00 Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) Yu, Lei Khachaturyan, Marina Matschiner, Michael Healey, Adam Bauer, Diane Cameron, Brenda Cusson, Mathieu Emmett Duffy, J. Joel Fodrie, F. Gill, Diana Grimwood, Jane Hori, Masakazu Hovel, Kevin Hughes, A. Randall Jahnke, Marlene Jenkins, Jerry Keymanesh, Keykhosrow Kruschel, Claudia Mamidi, Sujan Menning, Damian M. Moksnes, Per Olav Nakaoka, Masahiro Pennacchio, Christa Reiss, Katrin Rossi, Francesca Ruesink, Jennifer L. Schultz, Stewart T. Talbot, Sandra Unsworth, Richard Ward, David H. Dagan, Tal Schmutz, Jeremy Eisen, Jonathan A. Stachowicz, John J. Van de Peer, Yves Olsen, Jeanine L. Reusch, Thorsten B.H. 2023-08 application/pdf https://hdl.handle.net/11370/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d https://research.rug.nl/en/publications/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d https://doi.org/10.1038/s41477-023-01464-3 https://pure.rug.nl/ws/files/894444573/s41477-023-01464-3.pdf http://www.scopus.com/inward/record.url?scp=85165131390&partnerID=8YFLogxK eng eng https://research.rug.nl/en/publications/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d info:eu-repo/semantics/openAccess Yu , L , Khachaturyan , M , Matschiner , M , Healey , A , Bauer , D , Cameron , B , Cusson , M , Emmett Duffy , J , Joel Fodrie , F , Gill , D , Grimwood , J , Hori , M , Hovel , K , Hughes , A R , Jahnke , M , Jenkins , J , Keymanesh , K , Kruschel , C , Mamidi , S , Menning , D M , Moksnes , P O , Nakaoka , M , Pennacchio , C , Reiss , K , Rossi , F , Ruesink , J L , Schultz , S T , Talbot , S , Unsworth , R , Ward , D H , Dagan , T , Schmutz , J , Eisen , J A , Stachowicz , J J , Van de Peer , Y , Olsen , J L & Reusch , T B H 2023 , ' Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) ' , Nature Plants , vol. 9 , no. 8 , pp. 1207-1220 . https://doi.org/10.1038/s41477-023-01464-3 article 2023 ftunigroningenpu https://doi.org/10.1038/s41477-023-01464-3 2024-07-01T14:49:22Z Currents are unique drivers of oceanic phylogeography and thus determine the distribution of marine coastal species, along with past glaciations and sea-level changes. Here we reconstruct the worldwide colonization history of eelgrass (Zostera marina L.), the most widely distributed marine flowering plant or seagrass from its origin in the Northwest Pacific, based on nuclear and chloroplast genomes. We identified two divergent Pacific clades with evidence for admixture along the East Pacific coast. Two west-to-east (trans-Pacific) colonization events support the key role of the North Pacific Current. Time-calibrated nuclear and chloroplast phylogenies yielded concordant estimates of the arrival of Z. marina in the Atlantic through the Canadian Arctic, suggesting that eelgrass-based ecosystems, hotspots of biodiversity and carbon sequestration, have only been present there for ~243 ky (thousand years). Mediterranean populations were founded ~44 kya, while extant distributions along western and eastern Atlantic shores were founded at the end of the Last Glacial Maximum (~19 kya), with at least one major refuge being the North Carolina region. The recent colonization and five- to sevenfold lower genomic diversity of the Atlantic compared to the Pacific populations raises concern and opportunity about how Atlantic eelgrass might respond to rapidly warming coastal oceans. Article in Journal/Newspaper Arctic University of Groningen research database Arctic Kya ENVELOPE(8.308,8.308,63.772,63.772) Pacific Nature Plants 9 8 1207 1220 |
institution |
Open Polar |
collection |
University of Groningen research database |
op_collection_id |
ftunigroningenpu |
language |
English |
description |
Currents are unique drivers of oceanic phylogeography and thus determine the distribution of marine coastal species, along with past glaciations and sea-level changes. Here we reconstruct the worldwide colonization history of eelgrass (Zostera marina L.), the most widely distributed marine flowering plant or seagrass from its origin in the Northwest Pacific, based on nuclear and chloroplast genomes. We identified two divergent Pacific clades with evidence for admixture along the East Pacific coast. Two west-to-east (trans-Pacific) colonization events support the key role of the North Pacific Current. Time-calibrated nuclear and chloroplast phylogenies yielded concordant estimates of the arrival of Z. marina in the Atlantic through the Canadian Arctic, suggesting that eelgrass-based ecosystems, hotspots of biodiversity and carbon sequestration, have only been present there for ~243 ky (thousand years). Mediterranean populations were founded ~44 kya, while extant distributions along western and eastern Atlantic shores were founded at the end of the Last Glacial Maximum (~19 kya), with at least one major refuge being the North Carolina region. The recent colonization and five- to sevenfold lower genomic diversity of the Atlantic compared to the Pacific populations raises concern and opportunity about how Atlantic eelgrass might respond to rapidly warming coastal oceans. |
format |
Article in Journal/Newspaper |
author |
Yu, Lei Khachaturyan, Marina Matschiner, Michael Healey, Adam Bauer, Diane Cameron, Brenda Cusson, Mathieu Emmett Duffy, J. Joel Fodrie, F. Gill, Diana Grimwood, Jane Hori, Masakazu Hovel, Kevin Hughes, A. Randall Jahnke, Marlene Jenkins, Jerry Keymanesh, Keykhosrow Kruschel, Claudia Mamidi, Sujan Menning, Damian M. Moksnes, Per Olav Nakaoka, Masahiro Pennacchio, Christa Reiss, Katrin Rossi, Francesca Ruesink, Jennifer L. Schultz, Stewart T. Talbot, Sandra Unsworth, Richard Ward, David H. Dagan, Tal Schmutz, Jeremy Eisen, Jonathan A. Stachowicz, John J. Van de Peer, Yves Olsen, Jeanine L. Reusch, Thorsten B.H. |
spellingShingle |
Yu, Lei Khachaturyan, Marina Matschiner, Michael Healey, Adam Bauer, Diane Cameron, Brenda Cusson, Mathieu Emmett Duffy, J. Joel Fodrie, F. Gill, Diana Grimwood, Jane Hori, Masakazu Hovel, Kevin Hughes, A. Randall Jahnke, Marlene Jenkins, Jerry Keymanesh, Keykhosrow Kruschel, Claudia Mamidi, Sujan Menning, Damian M. Moksnes, Per Olav Nakaoka, Masahiro Pennacchio, Christa Reiss, Katrin Rossi, Francesca Ruesink, Jennifer L. Schultz, Stewart T. Talbot, Sandra Unsworth, Richard Ward, David H. Dagan, Tal Schmutz, Jeremy Eisen, Jonathan A. Stachowicz, John J. Van de Peer, Yves Olsen, Jeanine L. Reusch, Thorsten B.H. Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) |
author_facet |
Yu, Lei Khachaturyan, Marina Matschiner, Michael Healey, Adam Bauer, Diane Cameron, Brenda Cusson, Mathieu Emmett Duffy, J. Joel Fodrie, F. Gill, Diana Grimwood, Jane Hori, Masakazu Hovel, Kevin Hughes, A. Randall Jahnke, Marlene Jenkins, Jerry Keymanesh, Keykhosrow Kruschel, Claudia Mamidi, Sujan Menning, Damian M. Moksnes, Per Olav Nakaoka, Masahiro Pennacchio, Christa Reiss, Katrin Rossi, Francesca Ruesink, Jennifer L. Schultz, Stewart T. Talbot, Sandra Unsworth, Richard Ward, David H. Dagan, Tal Schmutz, Jeremy Eisen, Jonathan A. Stachowicz, John J. Van de Peer, Yves Olsen, Jeanine L. Reusch, Thorsten B.H. |
author_sort |
Yu, Lei |
title |
Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) |
title_short |
Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) |
title_full |
Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) |
title_fullStr |
Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) |
title_full_unstemmed |
Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) |
title_sort |
ocean current patterns drive the worldwide colonization of eelgrass ( zostera marina ) |
publishDate |
2023 |
url |
https://hdl.handle.net/11370/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d https://research.rug.nl/en/publications/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d https://doi.org/10.1038/s41477-023-01464-3 https://pure.rug.nl/ws/files/894444573/s41477-023-01464-3.pdf http://www.scopus.com/inward/record.url?scp=85165131390&partnerID=8YFLogxK |
long_lat |
ENVELOPE(8.308,8.308,63.772,63.772) |
geographic |
Arctic Kya Pacific |
geographic_facet |
Arctic Kya Pacific |
genre |
Arctic |
genre_facet |
Arctic |
op_source |
Yu , L , Khachaturyan , M , Matschiner , M , Healey , A , Bauer , D , Cameron , B , Cusson , M , Emmett Duffy , J , Joel Fodrie , F , Gill , D , Grimwood , J , Hori , M , Hovel , K , Hughes , A R , Jahnke , M , Jenkins , J , Keymanesh , K , Kruschel , C , Mamidi , S , Menning , D M , Moksnes , P O , Nakaoka , M , Pennacchio , C , Reiss , K , Rossi , F , Ruesink , J L , Schultz , S T , Talbot , S , Unsworth , R , Ward , D H , Dagan , T , Schmutz , J , Eisen , J A , Stachowicz , J J , Van de Peer , Y , Olsen , J L & Reusch , T B H 2023 , ' Ocean current patterns drive the worldwide colonization of eelgrass ( Zostera marina ) ' , Nature Plants , vol. 9 , no. 8 , pp. 1207-1220 . https://doi.org/10.1038/s41477-023-01464-3 |
op_relation |
https://research.rug.nl/en/publications/6a7037bc-d4cf-4023-9981-ecc8e73f8e6d |
op_rights |
info:eu-repo/semantics/openAccess |
op_doi |
https://doi.org/10.1038/s41477-023-01464-3 |
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Nature Plants |
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1207 |
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1220 |
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