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April 18, 2026Animals2 citationsOpen Access

Spatial Pattern of Spring Mesozooplankton in the Marginal Ice Zone (Northern Barents Sea)

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VDVladimir G. DvoretskyADAlexander G. Dvoretsky

Key Points

  • This research aims to understand how environmental conditions affect mesozooplankton communities in the Barents Sea's marginal ice zone.
  • Investigated mesozooplankton communities across different regions in April 2016.
  • Measured abundance and biomass of various taxa.
  • Conducted cluster analysis to identify assemblages related to different water types.
  • Used redundancy analysis and generalized linear models to assess environmental predictors.
  • Abundance ranged from 90 to 997 individuals m−3 and biomass from 1.1 to 48.6 mg dry mass m−3.
  • Oithona similis was the most abundant taxon, and calanoid copepods dominated total biomass.
  • Significant predictors included temperature, salinity, chlorophyll a concentration, and sea ice concentration.
  • Higher biomass observed in the northern and northeastern MIZ compared to previous data.

Abstract

The effects of environmental factors on zooplankton within the marginal ice zone (MIZ) of the Barents Sea remain poorly understood. To address this knowledge gap, we investigated mesozooplankton communities across the central, northern, and northeastern regions in April 2016. Abundance and biomass ranged from 90 to 997 individuals m−3 and from 1.1 to 48.6 mg dry mass m−3 (0.3 to 13.6 g dry mass m−2), respectively. Oithona similis was the most abundant taxon, while calanoid copepods, including Calanus spp., Metridia longa, and Pseudocalanus spp., dominated total biomass. The spatial distribution of mesozooplankton communities was closely linked to the physical properties of water masses. Cluster analysis identified two distinct assemblages associated with Polar Front Water and Arctic Water. Redundancy analysis and generalized linear models identified temperature, mean salinity, mean chlorophyll a concentration, and sea ice concentration as significant predictors of abundance and biomass. The dominance of older life stages within major copepod taxa indicated a winter status for the mesozooplankton community. Regional and temporal comparisons of mesozooplankton biomass with prior May–June data from central and northwestern areas highlighted higher productivity in the northern and northeastern MIZ. This increase is potentially related to the warming trends observed in the Arctic since the 2000s. Our research provides novel insights into Arctic marine zooplankton assemblages and serves as a valuable baseline for future ecological monitoring and modeling of the Barents Sea ecosystem in the context of global climate change.

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Cite This Study

Dvoretsky et al. (2026) studied this question.

synapsesocial.com/papers/69e3216540886becb6540a17https://doi.org/10.3390/ani16081213
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