Integrated Monitoring of Mola mola Behaviour in Space and Time.
Over the last decade, ocean sunfish movements have been monitored worldwide using various satellite tracking methods. This study reports the near-real time monitoring of fine-scale (< 10 m) behaviour of sunfish. The study was conducted in southern Portugal in May 2014 and involved satellite tags...
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doaj-642632474b2142d395cafd34a52bdfff2020-11-24T22:03:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01118e016040410.1371/journal.pone.0160404Integrated Monitoring of Mola mola Behaviour in Space and Time.Lara L SousaFrancisco López-CastejónJavier GilabertPaulo RelvasAna CoutoNuno QueirozRenato CaldasPaulo Sousa DiasHugo DiasMargarida FariaFilipe FerreiraAntónio Sérgio FerreiraJoão FortunaRicardo Joel GomesBruno LoureiroRicardo MartinsLuis MadureiraJorge NeivaMarina OliveiraJoão PereiraJosé PintoFrederic PyHugo QueirósDaniel SilvaP B SujitArtur ZolichTor Arne JohansenJoão Borges de SousaKanna RajanOver the last decade, ocean sunfish movements have been monitored worldwide using various satellite tracking methods. This study reports the near-real time monitoring of fine-scale (< 10 m) behaviour of sunfish. The study was conducted in southern Portugal in May 2014 and involved satellite tags and underwater and surface robotic vehicles to measure both the movements and the contextual environment of the fish. A total of four individuals were tracked using custom-made GPS satellite tags providing geolocation estimates of fine-scale resolution. These accurate positions further informed sunfish areas of restricted search (ARS), which were directly correlated to steep thermal frontal zones. Simultaneously, and for two different occasions, an Autonomous Underwater Vehicle (AUV) video-recorded the path of the tracked fish and detected buoyant particles in the water column. Importantly, the densities of these particles were also directly correlated to steep thermal gradients. Thus, both sunfish foraging behaviour (ARS) and possibly prey densities, were found to be influenced by analogous environmental conditions. In addition, the dynamic structure of the water transited by the tracked individuals was described by a Lagrangian modelling approach. The model informed the distribution of zooplankton in the region, both horizontally and in the water column, and the resultant simulated densities positively correlated with sunfish ARS behaviour estimator (rs = 0.184, p<0.001). The model also revealed that tracked fish opportunistically displace with respect to subsurface current flow. Thus, we show how physical forcing and current structure provide a rationale for a predator's fine-scale behaviour observed over a two weeks in May 2014.http://europepmc.org/articles/PMC4975458?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lara L Sousa Francisco López-Castejón Javier Gilabert Paulo Relvas Ana Couto Nuno Queiroz Renato Caldas Paulo Sousa Dias Hugo Dias Margarida Faria Filipe Ferreira António Sérgio Ferreira João Fortuna Ricardo Joel Gomes Bruno Loureiro Ricardo Martins Luis Madureira Jorge Neiva Marina Oliveira João Pereira José Pinto Frederic Py Hugo Queirós Daniel Silva P B Sujit Artur Zolich Tor Arne Johansen João Borges de Sousa Kanna Rajan |
spellingShingle |
Lara L Sousa Francisco López-Castejón Javier Gilabert Paulo Relvas Ana Couto Nuno Queiroz Renato Caldas Paulo Sousa Dias Hugo Dias Margarida Faria Filipe Ferreira António Sérgio Ferreira João Fortuna Ricardo Joel Gomes Bruno Loureiro Ricardo Martins Luis Madureira Jorge Neiva Marina Oliveira João Pereira José Pinto Frederic Py Hugo Queirós Daniel Silva P B Sujit Artur Zolich Tor Arne Johansen João Borges de Sousa Kanna Rajan Integrated Monitoring of Mola mola Behaviour in Space and Time. PLoS ONE |
author_facet |
Lara L Sousa Francisco López-Castejón Javier Gilabert Paulo Relvas Ana Couto Nuno Queiroz Renato Caldas Paulo Sousa Dias Hugo Dias Margarida Faria Filipe Ferreira António Sérgio Ferreira João Fortuna Ricardo Joel Gomes Bruno Loureiro Ricardo Martins Luis Madureira Jorge Neiva Marina Oliveira João Pereira José Pinto Frederic Py Hugo Queirós Daniel Silva P B Sujit Artur Zolich Tor Arne Johansen João Borges de Sousa Kanna Rajan |
author_sort |
Lara L Sousa |
title |
Integrated Monitoring of Mola mola Behaviour in Space and Time. |
title_short |
Integrated Monitoring of Mola mola Behaviour in Space and Time. |
title_full |
Integrated Monitoring of Mola mola Behaviour in Space and Time. |
title_fullStr |
Integrated Monitoring of Mola mola Behaviour in Space and Time. |
title_full_unstemmed |
Integrated Monitoring of Mola mola Behaviour in Space and Time. |
title_sort |
integrated monitoring of mola mola behaviour in space and time. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2016-01-01 |
description |
Over the last decade, ocean sunfish movements have been monitored worldwide using various satellite tracking methods. This study reports the near-real time monitoring of fine-scale (< 10 m) behaviour of sunfish. The study was conducted in southern Portugal in May 2014 and involved satellite tags and underwater and surface robotic vehicles to measure both the movements and the contextual environment of the fish. A total of four individuals were tracked using custom-made GPS satellite tags providing geolocation estimates of fine-scale resolution. These accurate positions further informed sunfish areas of restricted search (ARS), which were directly correlated to steep thermal frontal zones. Simultaneously, and for two different occasions, an Autonomous Underwater Vehicle (AUV) video-recorded the path of the tracked fish and detected buoyant particles in the water column. Importantly, the densities of these particles were also directly correlated to steep thermal gradients. Thus, both sunfish foraging behaviour (ARS) and possibly prey densities, were found to be influenced by analogous environmental conditions. In addition, the dynamic structure of the water transited by the tracked individuals was described by a Lagrangian modelling approach. The model informed the distribution of zooplankton in the region, both horizontally and in the water column, and the resultant simulated densities positively correlated with sunfish ARS behaviour estimator (rs = 0.184, p<0.001). The model also revealed that tracked fish opportunistically displace with respect to subsurface current flow. Thus, we show how physical forcing and current structure provide a rationale for a predator's fine-scale behaviour observed over a two weeks in May 2014. |
url |
http://europepmc.org/articles/PMC4975458?pdf=render |
work_keys_str_mv |
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