Changes in the abundance, species composition and distribution of the Barents Sea euphausiids (krill) : with focus on the expansion and reproduction of Meganyctiphanes norvegica

Euphausiids (krill) play a key role in the Barents Sea ecosystem, being an important prey for a number of species, and thereby transferring energy from primary producers to higher trophic levels. An unprecedented warming is currently happening in the Barents Sea, diminishing sea ice and affecting th...

Full description

Bibliographic Details
Main Author: Rasmussen, Astrid Fuglseth
Other Authors: Schneider, Susanne, Dalpadado, Padmini, Skern, Rasmus, Rivera, Alejandro Matteos
Format: Master Thesis
Language:English
Published: Norwegian University of Life Sciences, Ås 2018
Subjects:
Online Access:http://hdl.handle.net/11250/2582881
id ftunivmob:oai:nmbu.brage.unit.no:11250/2582881
record_format openpolar
spelling ftunivmob:oai:nmbu.brage.unit.no:11250/2582881 2023-05-15T15:38:01+02:00 Changes in the abundance, species composition and distribution of the Barents Sea euphausiids (krill) : with focus on the expansion and reproduction of Meganyctiphanes norvegica Rasmussen, Astrid Fuglseth Schneider, Susanne Dalpadado, Padmini Skern, Rasmus Rivera, Alejandro Matteos Barents Sea 2018 application/pdf http://hdl.handle.net/11250/2582881 eng eng Norwegian University of Life Sciences, Ås http://hdl.handle.net/11250/2582881 Attribution-NonCommercial-NoDerivatives 4.0 Internasjonal http://creativecommons.org/licenses/by-nc-nd/4.0/deed.no CC-BY-NC-ND Euphausiids Krill Barents Sea Meganyctiphanes norvegica Euphausiid larvae Master thesis 2018 ftunivmob 2021-09-23T20:15:19Z Euphausiids (krill) play a key role in the Barents Sea ecosystem, being an important prey for a number of species, and thereby transferring energy from primary producers to higher trophic levels. An unprecedented warming is currently happening in the Barents Sea, diminishing sea ice and affecting the distribution of water masses. As the Barents Sea environment is changing quickly, it crucial to estimate how euphausiid populations will be affected by climate change. The four main species of euphausiids in the Barents Sea are Thysanoeassa inermis, T. longicaudata, T. raschii and Meganyctiphanes norvegica. The goal of this thesis was to establish the relative species composition, distribution and abundance of the four main euphausiid species in the warm years of 2007-2015. For a reference, the results were compared with data collected in a colder period, during the years 1984-1992. Furthermore, an important part of understanding euphausiid population dynamics is the reproductive cycle. Therefore, this study also investigated the species composition, development and distribution of larvae in the southwestern Barents Sea, May 2015, and sought to compare these to investigations undertaken in 1988 and 1989 (Loftnes, 1993). My results show that there was a significant difference in the total abundance of euphausiids between the two study periods 1984-1992 and 2007-2015, having more than doubled from the first to the second, despite high capelin predation. Total euphausiid abundance was mainly distributed in the southwestern and south-central parts of the Barents Sea, south of 75°N in both study periods. However, T. inermis, T. longicaudata and the boreal, North-Atlantic species M. norvegica seemed to extend their distributional ranges into the northern parts of the Barents Sea during the years 2007-2015. Moreover, the abundance of M. norvegica increased from the first to the second study period, constituting a significant part of the species composition in the years 2007-2015. In contrast, abundances of the cold-water species T. raschii was significantly lower in the second study period. The distribution and species composition of euphausiid larvae of May 2015 were very similar to what was found in June 1988 and May 1989 with the largest abundances of larvae found in the Atlantic waters south of Bear Island, and the majority of larvae belonging to T. inermis. The spawning and development of larvae seemed to be related to water mass, being further developed in Coastal and Atlantic waters. Larvae of M norvegica were only found at the southernmost stations, indicating that there is still a thermal constraint on the reproduction of this species in the Barents Sea. However, if the warming continues, M. norvegica has the potential of completing a full life cycle in Barents Sea waters, which would highlight the ongoing Atlantification of the Barents Sea ecosystem. M-NF Master Thesis Barents Sea Bear Island Meganyctiphanes norvegica North Atlantic Sea ice Open archive Norwegian University of Life Sciences: Brage NMBU Barents Sea Bear Island ENVELOPE(-67.250,-67.250,-68.151,-68.151)
institution Open Polar
collection Open archive Norwegian University of Life Sciences: Brage NMBU
op_collection_id ftunivmob
language English
topic Euphausiids
Krill
Barents Sea
Meganyctiphanes norvegica
Euphausiid larvae
spellingShingle Euphausiids
Krill
Barents Sea
Meganyctiphanes norvegica
Euphausiid larvae
Rasmussen, Astrid Fuglseth
Changes in the abundance, species composition and distribution of the Barents Sea euphausiids (krill) : with focus on the expansion and reproduction of Meganyctiphanes norvegica
topic_facet Euphausiids
Krill
Barents Sea
Meganyctiphanes norvegica
Euphausiid larvae
description Euphausiids (krill) play a key role in the Barents Sea ecosystem, being an important prey for a number of species, and thereby transferring energy from primary producers to higher trophic levels. An unprecedented warming is currently happening in the Barents Sea, diminishing sea ice and affecting the distribution of water masses. As the Barents Sea environment is changing quickly, it crucial to estimate how euphausiid populations will be affected by climate change. The four main species of euphausiids in the Barents Sea are Thysanoeassa inermis, T. longicaudata, T. raschii and Meganyctiphanes norvegica. The goal of this thesis was to establish the relative species composition, distribution and abundance of the four main euphausiid species in the warm years of 2007-2015. For a reference, the results were compared with data collected in a colder period, during the years 1984-1992. Furthermore, an important part of understanding euphausiid population dynamics is the reproductive cycle. Therefore, this study also investigated the species composition, development and distribution of larvae in the southwestern Barents Sea, May 2015, and sought to compare these to investigations undertaken in 1988 and 1989 (Loftnes, 1993). My results show that there was a significant difference in the total abundance of euphausiids between the two study periods 1984-1992 and 2007-2015, having more than doubled from the first to the second, despite high capelin predation. Total euphausiid abundance was mainly distributed in the southwestern and south-central parts of the Barents Sea, south of 75°N in both study periods. However, T. inermis, T. longicaudata and the boreal, North-Atlantic species M. norvegica seemed to extend their distributional ranges into the northern parts of the Barents Sea during the years 2007-2015. Moreover, the abundance of M. norvegica increased from the first to the second study period, constituting a significant part of the species composition in the years 2007-2015. In contrast, abundances of the cold-water species T. raschii was significantly lower in the second study period. The distribution and species composition of euphausiid larvae of May 2015 were very similar to what was found in June 1988 and May 1989 with the largest abundances of larvae found in the Atlantic waters south of Bear Island, and the majority of larvae belonging to T. inermis. The spawning and development of larvae seemed to be related to water mass, being further developed in Coastal and Atlantic waters. Larvae of M norvegica were only found at the southernmost stations, indicating that there is still a thermal constraint on the reproduction of this species in the Barents Sea. However, if the warming continues, M. norvegica has the potential of completing a full life cycle in Barents Sea waters, which would highlight the ongoing Atlantification of the Barents Sea ecosystem. M-NF
author2 Schneider, Susanne
Dalpadado, Padmini
Skern, Rasmus
Rivera, Alejandro Matteos
format Master Thesis
author Rasmussen, Astrid Fuglseth
author_facet Rasmussen, Astrid Fuglseth
author_sort Rasmussen, Astrid Fuglseth
title Changes in the abundance, species composition and distribution of the Barents Sea euphausiids (krill) : with focus on the expansion and reproduction of Meganyctiphanes norvegica
title_short Changes in the abundance, species composition and distribution of the Barents Sea euphausiids (krill) : with focus on the expansion and reproduction of Meganyctiphanes norvegica
title_full Changes in the abundance, species composition and distribution of the Barents Sea euphausiids (krill) : with focus on the expansion and reproduction of Meganyctiphanes norvegica
title_fullStr Changes in the abundance, species composition and distribution of the Barents Sea euphausiids (krill) : with focus on the expansion and reproduction of Meganyctiphanes norvegica
title_full_unstemmed Changes in the abundance, species composition and distribution of the Barents Sea euphausiids (krill) : with focus on the expansion and reproduction of Meganyctiphanes norvegica
title_sort changes in the abundance, species composition and distribution of the barents sea euphausiids (krill) : with focus on the expansion and reproduction of meganyctiphanes norvegica
publisher Norwegian University of Life Sciences, Ås
publishDate 2018
url http://hdl.handle.net/11250/2582881
op_coverage Barents Sea
long_lat ENVELOPE(-67.250,-67.250,-68.151,-68.151)
geographic Barents Sea
Bear Island
geographic_facet Barents Sea
Bear Island
genre Barents Sea
Bear Island
Meganyctiphanes norvegica
North Atlantic
Sea ice
genre_facet Barents Sea
Bear Island
Meganyctiphanes norvegica
North Atlantic
Sea ice
op_relation http://hdl.handle.net/11250/2582881
op_rights Attribution-NonCommercial-NoDerivatives 4.0 Internasjonal
http://creativecommons.org/licenses/by-nc-nd/4.0/deed.no
op_rightsnorm CC-BY-NC-ND
_version_ 1766368714850041856