Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard

The retreat of glaciers, melting of permafrost, and increased riverine runoff influence Arctic fjords and their physical and biological environment, but to which extent is poorly known. In this study, I determined the impact of glacial and riverine inputs on the Arctic zooplankton community composit...

Full description

Bibliographic Details
Main Author: Vereide, Emilie Hernes
Format: Master Thesis
Language:English
Published: 2019
Subjects:
Online Access:http://hdl.handle.net/10852/74253
http://urn.nb.no/URN:NBN:no-77366
id ftoslouniv:oai:www.duo.uio.no:10852/74253
record_format openpolar
spelling ftoslouniv:oai:www.duo.uio.no:10852/74253 2023-05-15T13:05:55+02:00 Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard Vereide, Emilie Hernes 2019 http://hdl.handle.net/10852/74253 http://urn.nb.no/URN:NBN:no-77366 eng eng http://urn.nb.no/URN:NBN:no-77366 Vereide, Emilie Hernes. Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard. Master thesis, University of Oslo, 2019 http://hdl.handle.net/10852/74253 URN:NBN:no-77366 Fulltext https://www.duo.uio.no/bitstream/handle/10852/74253/1/MSc-Thesis-2019-Emilie-Hernes-Vereide.pdf Master thesis Masteroppgave 2019 ftoslouniv 2020-06-21T08:54:16Z The retreat of glaciers, melting of permafrost, and increased riverine runoff influence Arctic fjords and their physical and biological environment, but to which extent is poorly known. In this study, I determined the impact of glacial and riverine inputs on the Arctic zooplankton community composition in the largest fjord system in Svalbard, Isfjorden, at 78°North. The physical (temperature, salinity, turbidity, Secchi depth) and biological (chlorophyll a) environment were carefully studied seasonally and spatially from the start to the outer end of the three fjord arms of Isfjorden: Billefjorden, Tempelfjorden, and Adventfjorden in May, June and August 2018. The most prominent spatial and seasonal pattern across all fjords was the high contribution of meroplankton to the total zooplankton community. High total (~14.000 ind. m-3) and relative abundance (>50%) of meroplankton were documented at the innermost sites in May, which decreased along the salinity gradient from inner to outer. Meroplankton also showed a clear seasonal shift from cirriped nauplii and cypris in May and June, to bivalve veliger in August. Holoplankton shifted from copepodite stages and adult larger sized copepods, Calanus spp. in particular, in May and June, to a dominance of the smaller cyclopoid copepod Oithona similis in August. In addition, copepod nauplii dominated at the innermost sites in May relative to the total holoplankton (~70%) and decreased along the salinity gradient from inner to the outer fjord. The trophic modes of zooplankton did not show any clear spatial pattern but shifted seasonally from predominantly herbivores in May to omnivores to August. The zooplankton biomass did not show any significant differences between the months, nor the habitats. However, the species diversity increased from inner to outer in all three months, presumably affected by environmental stress at the innermost sites. By implementation of ordination methods, seasonality was identified as the most important driver of the zooplankton communities, where temperature, salinity, and light availability was shown to explain the most variation. The study also supported that terrestrial input has an impact on the zooplankton communities, in accordance with previous research. The study of zooplankton in coastal areas helps to understand the undergoing changes in these ecosystems. In order to gain more knowledge on future changes in the Arctic, future studies highlighting these subjects are recommended. Master Thesis Adventfjorden Arctic Billefjorden Isfjord* Isfjorden permafrost Svalbard Tempelfjord* Tempelfjorden Zooplankton Copepods Universitet i Oslo: Digitale utgivelser ved UiO (DUO) Adventfjorden ENVELOPE(15.515,15.515,78.258,78.258) Arctic Billefjorden ENVELOPE(16.417,16.417,78.563,78.563) Svalbard Tempelfjorden ENVELOPE(17.076,17.076,78.404,78.404)
institution Open Polar
collection Universitet i Oslo: Digitale utgivelser ved UiO (DUO)
op_collection_id ftoslouniv
language English
description The retreat of glaciers, melting of permafrost, and increased riverine runoff influence Arctic fjords and their physical and biological environment, but to which extent is poorly known. In this study, I determined the impact of glacial and riverine inputs on the Arctic zooplankton community composition in the largest fjord system in Svalbard, Isfjorden, at 78°North. The physical (temperature, salinity, turbidity, Secchi depth) and biological (chlorophyll a) environment were carefully studied seasonally and spatially from the start to the outer end of the three fjord arms of Isfjorden: Billefjorden, Tempelfjorden, and Adventfjorden in May, June and August 2018. The most prominent spatial and seasonal pattern across all fjords was the high contribution of meroplankton to the total zooplankton community. High total (~14.000 ind. m-3) and relative abundance (>50%) of meroplankton were documented at the innermost sites in May, which decreased along the salinity gradient from inner to outer. Meroplankton also showed a clear seasonal shift from cirriped nauplii and cypris in May and June, to bivalve veliger in August. Holoplankton shifted from copepodite stages and adult larger sized copepods, Calanus spp. in particular, in May and June, to a dominance of the smaller cyclopoid copepod Oithona similis in August. In addition, copepod nauplii dominated at the innermost sites in May relative to the total holoplankton (~70%) and decreased along the salinity gradient from inner to the outer fjord. The trophic modes of zooplankton did not show any clear spatial pattern but shifted seasonally from predominantly herbivores in May to omnivores to August. The zooplankton biomass did not show any significant differences between the months, nor the habitats. However, the species diversity increased from inner to outer in all three months, presumably affected by environmental stress at the innermost sites. By implementation of ordination methods, seasonality was identified as the most important driver of the zooplankton communities, where temperature, salinity, and light availability was shown to explain the most variation. The study also supported that terrestrial input has an impact on the zooplankton communities, in accordance with previous research. The study of zooplankton in coastal areas helps to understand the undergoing changes in these ecosystems. In order to gain more knowledge on future changes in the Arctic, future studies highlighting these subjects are recommended.
format Master Thesis
author Vereide, Emilie Hernes
spellingShingle Vereide, Emilie Hernes
Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard
author_facet Vereide, Emilie Hernes
author_sort Vereide, Emilie Hernes
title Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard
title_short Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard
title_full Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard
title_fullStr Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard
title_full_unstemmed Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard
title_sort seasonal zooplankton community patterns along a gradient from land to sea in isfjorden, svalbard
publishDate 2019
url http://hdl.handle.net/10852/74253
http://urn.nb.no/URN:NBN:no-77366
long_lat ENVELOPE(15.515,15.515,78.258,78.258)
ENVELOPE(16.417,16.417,78.563,78.563)
ENVELOPE(17.076,17.076,78.404,78.404)
geographic Adventfjorden
Arctic
Billefjorden
Svalbard
Tempelfjorden
geographic_facet Adventfjorden
Arctic
Billefjorden
Svalbard
Tempelfjorden
genre Adventfjorden
Arctic
Billefjorden
Isfjord*
Isfjorden
permafrost
Svalbard
Tempelfjord*
Tempelfjorden
Zooplankton
Copepods
genre_facet Adventfjorden
Arctic
Billefjorden
Isfjord*
Isfjorden
permafrost
Svalbard
Tempelfjord*
Tempelfjorden
Zooplankton
Copepods
op_relation http://urn.nb.no/URN:NBN:no-77366
Vereide, Emilie Hernes. Seasonal zooplankton community patterns along a gradient from land to sea in Isfjorden, Svalbard. Master thesis, University of Oslo, 2019
http://hdl.handle.net/10852/74253
URN:NBN:no-77366
Fulltext https://www.duo.uio.no/bitstream/handle/10852/74253/1/MSc-Thesis-2019-Emilie-Hernes-Vereide.pdf
_version_ 1766397363456311296