• norsk
    • English
  • norsk 
    • norsk
    • English
  • Logg inn
Vis innførsel 
  •   Hjem
  • Havforskningsinstituttet
  • Publikasjoner fra CRIStin
  • Vis innførsel
  •   Hjem
  • Havforskningsinstituttet
  • Publikasjoner fra CRIStin
  • Vis innførsel
JavaScript is disabled for your browser. Some features of this site may not work without it.

Multiple configurations and fluctuating trophic control in the Barents Sea food-web

Sivel, Elliot Manuarii; Planque, Benjamin; Lindstrøm, Ulf; Yoccoz, Nigel G.
Peer reviewed, Journal article
Published version
Thumbnail
Åpne
Multiple+configurations+and+fluctuating+trophic+control+in+the+Barents+Sea+food-web.pdf (4.138Mb)
Permanent lenke
https://hdl.handle.net/11250/2770050
Utgivelsesdato
2021
Metadata
Vis full innførsel
Samlinger
  • Articles [3343]
  • Publikasjoner fra CRIStin [3536]
Originalversjon
PLOS ONE. 2021, 16 (7), .   10.1371/journal.pone.0254015
Sammendrag
The Barents Sea is a subarctic shelf sea which has experienced major changes during the past decades. From ecological time-series, three different food-web configurations, reflecting successive shifts of dominance of pelagic fish, demersal fish, and zooplankton, as well as varying trophic control have been identified in the last decades. This covers a relatively short time-period as available ecological time-series are often relatively short. As we lack information for prior time-periods, we use a chance and necessity model to investigate if there are other possible configurations of the Barents Sea food-web than those observed in the ecological time-series, and if this food-web is characterized by a persistent trophic control. We perform food-web simulations using the Non-Deterministic Network Dynamic model (NDND) for the Barents Sea, identify food-web configurations and compare those to historical reconstructions of food-web dynamics. Biomass configurations fall into four major types and three trophic pathways. Reconstructed data match one of the major biomass configurations but is characterized by a different trophic pathway than most of the simulated configurations. The simulated biomass displays fluctuations between bottom-up and top-down trophic control over time rather than persistent trophic control. Our results show that the configurations we have reconstructed are strongly overlapping with our simulated configurations, though they represent only a subset of the possible configurations of the Barents Sea food-web.
Tidsskrift
PLOS ONE

Kontakt oss | Gi tilbakemelding

Personvernerklæring
DSpace software copyright © 2002-2019  DuraSpace

Levert av  Unit
 

 

Bla i

Hele arkivetDelarkiv og samlingerUtgivelsesdatoForfattereTitlerEmneordDokumenttyperTidsskrifterDenne samlingenUtgivelsesdatoForfattereTitlerEmneordDokumenttyperTidsskrifter

Min side

Logg inn

Statistikk

Besøksstatistikk

Kontakt oss | Gi tilbakemelding

Personvernerklæring
DSpace software copyright © 2002-2019  DuraSpace

Levert av  Unit