Eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence

One of the current challenges in evolutionary ecology is understanding the long-term persistence of contemporary-evolving predator-prey interactions across space and time. To address this, we developed an extension of a multi-locus, multi-trait eco-evolutionary individual-based model that incorporat...

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Main Authors: Moya-Laraño, Jordi, Bilbao-Castro, José Román, Barrionuevo, Gabriel, Ruiz-Lupión, Dolores, Casado, Leocadio G., Montserrat, Marta, Melián, Carlos J., Magalhães, Sara
Other Authors: Rowntree, Jennifer, Woodward, Guy
Format: Book Part
Language:English
Published: Elsevier 2014
Subjects:
Online Access:https://doi.org/10.1016/B978-0-12-801374-8.00003-7
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spelling fteawag:oai:dora:eawag_11642 2023-08-15T12:43:04+02:00 Eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence Moya-Laraño, Jordi Bilbao-Castro, José Román Barrionuevo, Gabriel Ruiz-Lupión, Dolores Casado, Leocadio G. Montserrat, Marta Melián, Carlos J. Magalhães, Sara Moya-Laraño, Jordi Rowntree, Jennifer Woodward, Guy 2014 https://doi.org/10.1016/B978-0-12-801374-8.00003-7 eng eng Elsevier Eco-evolutionary dynamics eawag:11642 isbn: 978-0-12-801374-8 local: 16899 scopus: 2-s2.0-84906837365 doi:10.1016/B978-0-12-801374-8.00003-7 ut: 000341216800004 Text Book Chapter 2014 fteawag https://doi.org/10.1016/B978-0-12-801374-8.00003-7 2023-07-23T23:50:19Z One of the current challenges in evolutionary ecology is understanding the long-term persistence of contemporary-evolving predator-prey interactions across space and time. To address this, we developed an extension of a multi-locus, multi-trait eco-evolutionary individual-based model that incorporates several interacting species in explicit landscapes. We simulated eco-evolutionary dynamics of multiple species food webs with different degrees of connectance across soil-moisture islands. A broad set of parameter combinations led to the local extinction of species, but some species persisted, and this was associated with (1) high connectance and omnivory and (2) ongoing evolution, due to multi-trait genetic variability of the embedded species. Furthermore, persistence was highest at intermediate island distances, likely because of a balance between predation-induced extinction (strongest at short island distances) and the coupling of island diversity by top predators, which by travelling among islands exert global top-down control of biodiversity. In the simulations with high genetic variation, we also found widespread trait evolutionary changes indicative of eco-evolutionary dynamics. We discuss how the ever-increasing computing power and high-resolution data availability will soon allow researchers to start bridging the in vivo-in silico gap. Book Part Short Island DORA Eawag Short Island ENVELOPE(-60.400,-60.400,-63.950,-63.950) 75 143
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description One of the current challenges in evolutionary ecology is understanding the long-term persistence of contemporary-evolving predator-prey interactions across space and time. To address this, we developed an extension of a multi-locus, multi-trait eco-evolutionary individual-based model that incorporates several interacting species in explicit landscapes. We simulated eco-evolutionary dynamics of multiple species food webs with different degrees of connectance across soil-moisture islands. A broad set of parameter combinations led to the local extinction of species, but some species persisted, and this was associated with (1) high connectance and omnivory and (2) ongoing evolution, due to multi-trait genetic variability of the embedded species. Furthermore, persistence was highest at intermediate island distances, likely because of a balance between predation-induced extinction (strongest at short island distances) and the coupling of island diversity by top predators, which by travelling among islands exert global top-down control of biodiversity. In the simulations with high genetic variation, we also found widespread trait evolutionary changes indicative of eco-evolutionary dynamics. We discuss how the ever-increasing computing power and high-resolution data availability will soon allow researchers to start bridging the in vivo-in silico gap.
author2 Moya-Laraño, Jordi
Rowntree, Jennifer
Woodward, Guy
format Book Part
author Moya-Laraño, Jordi
Bilbao-Castro, José Román
Barrionuevo, Gabriel
Ruiz-Lupión, Dolores
Casado, Leocadio G.
Montserrat, Marta
Melián, Carlos J.
Magalhães, Sara
spellingShingle Moya-Laraño, Jordi
Bilbao-Castro, José Román
Barrionuevo, Gabriel
Ruiz-Lupión, Dolores
Casado, Leocadio G.
Montserrat, Marta
Melián, Carlos J.
Magalhães, Sara
Eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence
author_facet Moya-Laraño, Jordi
Bilbao-Castro, José Román
Barrionuevo, Gabriel
Ruiz-Lupión, Dolores
Casado, Leocadio G.
Montserrat, Marta
Melián, Carlos J.
Magalhães, Sara
author_sort Moya-Laraño, Jordi
title Eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence
title_short Eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence
title_full Eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence
title_fullStr Eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence
title_full_unstemmed Eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence
title_sort eco-evolutionary spatial dynamics: rapid evolution and isolation explain food web persistence
publisher Elsevier
publishDate 2014
url https://doi.org/10.1016/B978-0-12-801374-8.00003-7
long_lat ENVELOPE(-60.400,-60.400,-63.950,-63.950)
geographic Short Island
geographic_facet Short Island
genre Short Island
genre_facet Short Island
op_relation Eco-evolutionary dynamics
eawag:11642
isbn: 978-0-12-801374-8
local: 16899
scopus: 2-s2.0-84906837365
doi:10.1016/B978-0-12-801374-8.00003-7
ut: 000341216800004
op_doi https://doi.org/10.1016/B978-0-12-801374-8.00003-7
container_start_page 75
op_container_end_page 143
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