Your browser doesn't support javascript.
loading
Don't catch me if you can - Using cabled observatories as multidisciplinary platforms for marine fish community monitoring: An in situ case study combining Underwater Video and environmental DNA data.
Mirimin, Luca; Desmet, Sam; Romero, David López; Fernandez, Sara Fernandez; Miller, Dulaney L; Mynott, Sebastian; Brincau, Alejandro Gonzalez; Stefanni, Sergio; Berry, Alan; Gaughan, Paul; Aguzzi, Jacopo.
Afiliación
  • Mirimin L; Marine and Freshwater Research Centre, Dublin Road, H91 T8NW Galway, Ireland; Galway-Mayo Institute of Technology, School of Science and Computing, Department of Natural Sciences, Dublin Road, H91 T8NW Galway, Ireland. Electronic address: luca.mirimin@gmit.ie.
  • Desmet S; Marine and Freshwater Research Centre, Dublin Road, H91 T8NW Galway, Ireland; Galway-Mayo Institute of Technology, School of Science and Computing, Department of Natural Sciences, Dublin Road, H91 T8NW Galway, Ireland.
  • Romero DL; Institut de Ciencias del Mar (ICM-CSIC), Barcelona, Spain.
  • Fernandez SF; Marine and Freshwater Research Centre, Dublin Road, H91 T8NW Galway, Ireland; Galway-Mayo Institute of Technology, School of Science and Computing, Department of Natural Sciences, Dublin Road, H91 T8NW Galway, Ireland.
  • Miller DL; Marine and Freshwater Research Centre, Dublin Road, H91 T8NW Galway, Ireland; Galway-Mayo Institute of Technology, School of Science and Computing, Department of Natural Sciences, Dublin Road, H91 T8NW Galway, Ireland.
  • Mynott S; Applied Genomics Ltd, Brixham Environmental Laboratory, Freshwater Quarry, Brixham TQ5 8BA, United Kingdom.
  • Brincau AG; Applied Genomics Ltd, Brixham Environmental Laboratory, Freshwater Quarry, Brixham TQ5 8BA, United Kingdom.
  • Stefanni S; Stazione Zoologica Anton Dohrn (SZN), Naples, Italy.
  • Berry A; Marine Institute, Ocean Science and Information Services, Rinville, Oranmore, Co. Galway, H91 R673, Ireland.
  • Gaughan P; Marine Institute, Ocean Science and Information Services, Rinville, Oranmore, Co. Galway, H91 R673, Ireland.
  • Aguzzi J; Institut de Ciencias del Mar (ICM-CSIC), Barcelona, Spain; Stazione Zoologica Anton Dohrn (SZN), Naples, Italy. Electronic address: jaguzzi@icm.csic.es.
Sci Total Environ ; 773: 145351, 2021 Jun 15.
Article en En | MEDLINE | ID: mdl-33940724
ABSTRACT
Cabled observatories are marine infrastructures equipped with biogeochemical and oceanographic sensors as well as High-Definition video and audio equipment, hence providing unprecedented opportunities to study marine biotic and abiotic components. Additionally, non-invasive monitoring approaches such as environmental DNA (eDNA) metabarcoding have further enhanced the ability to characterize marine life. Although the use of non-invasive tools beholds great potential for the sustainable monitoring of biodiversity and declining natural resources, such techniques are rarely used in parallel and understanding their limitations is challenging. Thus, this study combined Underwater Video (UV) with eDNA metabarcoding data to produce marine fish community profiles over a 2 months period in situ at a cabled observatory in the northeast Atlantic (SmartBay Ireland). By combining both approaches, an increased number of fish could be identified to the species level (total of 22 species), including ecologically and economically important species such as Atlantic cod, whiting, mackerel and monkfish. The eDNA approach alone successfully identified a higher number of species (59%) compared to the UV approach (18%), whereby 23% of species were detected by both methods. The parallel implementation of point collection eDNA and time series UV data not only confirmed expectations of the corroborative effect of using multiple disciplines in fish community composition, but also enabled the assessment of limitations intrinsic to each technique including the identification of false-negative detections in one sampling technology relative to the other. This work showcased the usefulness of cabled observatories as key platforms for in situ empirical assessment of both challenges and prospects of novel technologies in aid to future monitoring of marine life.
Asunto(s)
Palabras clave

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: ADN Ambiental Límite: Animals País/Región como asunto: Europa Idioma: En Revista: Sci Total Environ Año: 2021 Tipo del documento: Article

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: ADN Ambiental Límite: Animals País/Región como asunto: Europa Idioma: En Revista: Sci Total Environ Año: 2021 Tipo del documento: Article