Abstract
Marine benthic macrofauna communities are considered a good indicator of subtle environmental long-term changes in an ecosystem. In 1997/1998 and 2006, soft-bottom fauna of an Arctic glacial fjord Kongsfjorden was extensively sampled and major communities were identified along the fjord axis, which were related to the diminishing influence of glacial activity. Spatial patterns in community structure and species diversity were significantly different in the central basin of Kongsfjorden between periods while there was no change in the inner part of the fjord. In 1997/98, three faunal associations were distinguished with significant differences in species richness and diversity (H′) while in 2006 only two faunal associations were identified and there were no differences any more between the two formerly distinct associations in the central fjord. The increased input of Atlantic water due to a stronger West Spitsbergen Current may be the reason for unification of previous clear faunal division. The faunal association in the inner, well separated glacial part of the fjord, characterized by strong glacier influence, was protected from Atlantic water inflow and, hence, the macrobenthic fauna essentially remained unaffected. Reduced abundance of species typical for glacial bays in the central part of the fjord in 2006 may result from the decreasing effect of Blomstrandbreen glacier, strong increase of input of Atlantic water into the fjord and increased temperature of West Spitsbergen Current. Higher values of POC in 2006 than in 1998 are likely the effect of increased primary production resulting from warmer water temperatures.
This is a preview of subscription content, access via your institution.







References
ACIA (2005) Arctic climate impact assessment. Cambridge University Press, New York
Anderson PJ, Piatt JF (1999) Community reorganization in the Gulf of Alaska following ocean climate regime shift. Mar Ecol Prog Ser 198:117–123
Bahr G, Gulliksen B (2001) Variation of the epifauna on pier-pilings between 1980 and 1992 near the city of Tromsø, Northern Norway. Polar Biol 24:282–291
Berge J, Johnsen G, Nilsen F, Gulliksen B, Slagstad D (2005) Ocean temperature oscillations enable reappearance of blue mussels Mytilus edulis in Svalbard after a 1000 year absence. Mar Ecol Prog Ser 303:167–175
Beszczyńska-Möller A, Węsławski JM, Walczowski W, Zajączkowski M (1997) Estimation of glacial meltwater discharge into Svalbard coastal waters. Oceanologia 39:289–298
Beuchel F, Gulliksen B (2008) Temporal patterns of benthic community development in an Arctic fjord (Kongsfjorden, Svalbard): results of a 24-year manipulation study. Polar Biol 31:913–924
Beuchel F, Gulliksen B, Carroll ML (2006) Long-term patterns of rocky bottom macrobenthic community structure in an Arctic fjord (Kongsfjorden, Svalbard) in relation to climate variability (1980–2003). J Mar Syst 63:35–48
Blanchard AL, Feder HM, Shaw DG (2002) Long-term investigation of benthic fauna and the influence of treated ballast water disposal in Port Valdez, Alaska. Mar Poll Bull 44:367–382
Cavalieri DJ, Parkinson CL, Vinnikov KY (2003) 30-year satellite record reveals contrasting Arctic and Antarctic decadal sea ice variability. Geophys Res Lett 30:1970
Clarke KR, Warwick RM (2001a) A further biodiversity index applicable to species lists: variation in taxonomic distinctness. Mar Ecol Prog Ser 216:265–278
Clarke KR, Warwick RM (2001b) Change in marine communities: an approach to statistical analysis and interpretation, 2nd edn. PRIMER-E, Plymouth
Cochrane SJ (2003) Snowflakes and feather-dusters—some challenges for soft-bottom fanworm systematics. Hydrobiol 496:49–62
Cottier F, Tverberg V, Inall M, Svendsen H, Nilsen F, Griffiths C (2005) Water mass modification in an Arctic fjord through cross-shelf exchange: the seasonal hydrography of Kongsfjorden, Svalbard. J Geophys Res 110:C12005
Cottier FR, Nilsen F, Inall ME, Gerland S, Tverberg V, Svendsen H (2007) Wintertime warming of an Arctic shelf in response to largescale atmospheric circulation. Geophys Res Lett 34:L10607. doi:10.1029/2007GL029948
Dowdeswell JA (1987) Processes of glaciomarine sedimentation. Prog Phys Geogr 11:52–90
Elverhøi A, Lønne O, Seland R (1983) Glaciomarine sedimentation in a modern fjord environment, Spitsbergen. Polar Res 1:127–149
Fauchald K, Jumars PA (1979) The diet of worms: a study of polychaete feeding guilds. Oceanogr Mar Biol Annu Rev 17:193–284
Franke HD, Gutow L (2004) Long-term changes in the macrozoobenthos around the rocky island of Helgoland (German Bight, North Sea). Helgoland Mar Res 58:303–310
Grebmeier JM, Overland JE, Moore SE, Farley EV, Carmack EC, Cooper LW, Frey KE, Helle JH, McLaughlin FA, McNutt SL (2006) A major ecosystem shift in the Northern Bering Sea. Science 311:1461–1464
Hawkins SJ, Southward AJ, Genner MJ (2003) Detection of environmental change in a marine ecosystem-evidence from the western English Channel. Sci Total Environ 310:245–256
Heide-Jorgensen MP, Laidre KL, Logsdon ML, Nielsen TG (2007) Springtime coupling between chlorophyll a, sea icea and sea surface temperature in Disko Bay, West Greenland. Prog Oceanogr 73:79–95
Hengeveld R (1990) Dynamic biogeography. Cambridge University Press, Cambridge
Hily C (1987) Spatial-temporal variability of Chaetozone setosa (Malmgren) populations on an organic gradient in the Bay of Brest, France. J Exp Mar Biol Ecol 112:201–216
Hop H, Pearson T, Hegseth EN, Kovacs K, Wiencke C, Kwaśniewski S, Eiane K, Mehlum F, Gulliksen B, WłodarskaKowalczuk M, Lydersen C, Węsławski JM, Cochrane S, Gabrielsen GW, Leakey R, Lønne OJ, Zajączkowski M, Falk-Petersen S, Kendall M, Wängber SA, Bischof K, Voronkov A, Kovaltchouk NA, Wiktor J, Poltermann M, di Prisco G, Papucci C, Gerland S (2002) The marine ecosystem of Kongsfjorden, Svalbard. Polar Res 21:167–208
Hoste E, Vanhove S, Schewe I, Soltwedel T, Vanreusel A (2007) Spatial and temporal variations in deep-sea meiofauna assemblages in the Marginal Ice Zone of the Arctic Ocean. Deep Sea Res I 54:109–129
IPCC (2001) Climate change 2001: the scientific basis. Cambridge University Press, Cambridge
Johannessen OM, Shalina EV, Miles MW (1999) Satellite evidence for an Arctic sea ice cover in transformation. Science 286:1937–1939
Kendall MA (1994) Polychaete assemblages along a depth gradient in a Spitsbergen Fjord. In: Dauvin JC, Laubier L, Reish DJ (eds) Acte de la 4eme Conférence internationale des Polychetes. Mem Mus Nat Hist Nat, pp 463–470
Kröncke I (1995) Long-term changes in North Sea benthos. Senckenbergiana Maritima 26:73–80
Kröncke I, Dippner JW, Heyen H, Zeiss B (1998) Long-term changes in macrofaunal communities off Norderney (East Frisia, Germany) in relation to climate variability. Mar Ecol Prog Ser 167:25–36
Lavoie D, Macdonald RW, Denman KL (2009) Primary productivity and export fluxes on the Canadian shelf of the Beaufort Sea: a modelling study. J Mar Sys 75:17–32
Lefauconnier B, Hagen JO, Rudant JP (1994) Flow speed and calving rate of Kongsbreen glacier, 70°N Spitsbergen, Svalbard, using SPOT images. Polar Res 13:59–66
Lemke P, Harder M, Hilmer M (2000) The response of arctic sea ice to global change. Clim Change 46:277–287
Lepore K, Moran SB, Grebmeier JM, Cooper LW, Lalande C, Maslowski W, Hill V, Bates NR, Hansell DA, Mathis JT (2007) Seasonal and interannula changes in particulate organic carbon export and deposition in the Chukchi Sea. J Geophys Res 112:C10024
Loeng H (1991) Features of the physical oceanographic conditions of the Barents Sea. In: Sakshaug E, Hopkins CCE, Oritsland NA (eds) Proceedings of the Pro Mare symposium on the polar marine ecology, Trondheim, 12–16 May 1990. Polar Res, Trondheim
Moore PG (1977) Inorganic particulate suspensions in the sea and their effects on marine animals. Oceanogr Mar Biol Annu Rev 15:225–363
Myślińska E (2001) Laboratoryjne badania gruntów. PWN, Warszawa
Ockelmann WK (1958) The zoology of East Greenland, marine Lamellibranchiata. Meddelelser om Gronland 122:1–256
Olsgard F, Hasle JR (1993) Impact of waste from titanium mining on benthic fauna. J Exp Mar Biol Ecol 172:185–213
Pearson TH, Mannvik H-P (1998) Long-term changes in the diversity and faunal structure of benthic communities in the northern North Sea: natural variability or induced instability? Hydrobiol 375/376:317–329
Pearson TH, Rosenberg R (1978) Macrobenthic succession in relation to organic enrichment and pollution of the marine environment. Oceanogr Mar Biol Annu Rev 16:229–311
Pearson TH, Mannvik HP, Evans R, Falk-Petersen S (1996) The benthic communities of the Snorre Field in the northern North Sea (61° 30′ N 2° 10′ E) 1. The distribution and structure of communities in undisturbed sediments. J Sea Res 35:301–314
Piepenburg D (2005) Recent research on Arctic benthos: common notions need to be revised. Polar Biol 28:733–755
Polyakov IV, Beszczynska A, Carmack EC, Dmitrenko IA, Fahrbach E, Frohlov IE, Gerdes R, Hansen E, Holfort J, Ivanov VV, Johnson MA, Karcher M, Kauker F, Morison J, Orvik KA, Schauer U, Simmons HL, Skagseth O, Sokolov VT, Steele M, Timokhov LA, Walsh D, Walsh JE (2005) One more step toward a warmer Arctic. Geophys Res Lett 32:L17605. doi:10.1029/2005GL023740
Regier HA, Holmes JA, Pauly D (1990) Influence of temperature changes on aquatic ecosystems: an interpretation of empirical data. T Am Fish Soc 119:374–389
Reichert K, Buchholz F (2006) Changes in the macrozoobenthos of the intertidal zone at Helgoland (German Bight, North Sea): a survey of 1984 repeated in 2002. Helgol Mar Res 60:213–223
Renaud PE, Włodarska-Kowalczuk M, Trannum H, Holte B, Węsławski JM, Cochrane S, Dahle S, Gulliksen B (2007) Multidecadal stability of benthic community structure in a high-Arctic glacial fjord (van Mijenfjord, Spitsbergen). Polar Biol 30:295–305
Richter-Menge J, Overland J, Proshutinsky A, Romanovsky V, Bengtsson L, Brigham L, Dyurgerov M, Gascard JC, Gerland S, Graversen R, Haas C, Karcher M, Kuhry P, Maslanik J, Melling H, Maslowski W, Morison J, Perovich D, Przybylak R, Rachold V, Rigor I, Shiklomanov A, Stroeve J, Walker D, Walsh J (2006) State of the Arctic Report. NOAA OAR Special Report, NOAA/OAR/PMEL, Seattle, WA 36
Salen-Picard C, Arlhac D (2002) Long-term changes in a Mediterranean benthic community: relationships between the polychaete assemblages and hydrological variations of the Rhone River. Estuaries 25:1121–1130
Svendsen H, Beszczynska-Möller A, Hagen JO, Lefauconnier B, Tverberg V, Gerland S, Orbćk JB, Bischof K, Papucci C, Zajączkowski M, Azzolini R, Bruland O, Wiencke C, Winther JG, Dallmann W (2002) The physical environment of Kongsfjorden-Krossfjorden, an arctic fjord system in Svalbard. Polar Res 21:133–166
Syvitski JPM, Andrews JT (1994) Climate change: numerical modeling of sedimentation and coastal processes, eastern Canadian Arctic. Arctic Alpine Res 26:199–212
Syvitski JPM, Burell DC, Skei JM (1987) Fjords. Processes and products. Springer-Verlag, New York
Underwood AJ (1996) Detection, interpretation, prediction and management of environmental disturbances: some roles for experimental marine ecology. J Exp Mar Biol Ecol 200:1–27
Walczowski W, Piechura J (2006) New evidence of warming propagating toward the Arctic Ocean. Geophys Res Lett 33:L12601
Walczowski W, Piechura J (2007) Pathways of the Greenland Sea warming. Geophys Res Lett 34:L10608
Warwick RM (1993) Environmental impact studies on marine communities: pragmatical considerations. Aus J Ecol 18:63–80
Węsławski JM (1993) The sensitivity of Svalbard’s marine ecosystem towards climate change. Institute of Oceanology, Polish Academy of Sciences, Sopot
Włodarska-Kowalczuk M (2007) Molluscs in Kongsfjorden (Spitsbergen, Svalbard): a species list and patterns of distribution and diversity. Polar Res 26:48–63
Włodarska-Kowalczuk M, Pearson TH (2004) Soft-bottom macrobenthic faunal associations and factors affecting species distribution in an Arctic glacial fjord (Kongsfjord, Spitsbergen). Polar Biol 27:155–167
Włodarska-Kowalczuk M, Węsławski JM (2001) Impact of climate warming on Arctic benthic biodiversity: a case study of two Arctic glacial bays. Climate Res 19:127–132
Włodarska-Kowalczuk M, Węsławski JM, Kotwicki L (1998) Spitsbergen glacial bays macrobenthos—a comparative study. Polar Biol 20:66–73
Włodarska-Kowalczuk M, Pearson TH, Kendall MA (2005) Benthic response to chronic natural physical disturbance by glacial sedimentation in an Arctic fjord. Mar Ecol Prog Ser 303:31–41
Wu YS, Peterson IK, Tang CCL, Platt T, Sathyendranath S, Fuentes-Yaco C (2007) The impact of sea ice on the initiation of the spring bloom on the Newfoundland and Labrador Shelves. J Plankton Res 29:509–514
Zajączkowski M (2008) Sediment supply and fluxes in glacial and outwash fjords, Kongsfjorden and Adventfjorden, Svalbard. Polish Polar Res 29:59–72
Acknowledgments
The study was completed thanks to funding provided by grant N304 006 32/0666 from the Polish State Committee for Scientific Research. The Polychaeta identifications were done by Mrs. Slawomira Gromisz who is gratefully acknowledged. The authors acknowledge the support of the MarBEF Network of Excellence ‘Marine Biodiversity and Ecosystem Functioning’, which is funded by the Sustainable Development, Global Change and Ecosystems Programme of the European Community’s Sixth Framework Programme (contract no. GOCE-CT-2003-505446). This publication is contribution to the MarBEF responsive mode program ArctEco.
Author information
Authors and Affiliations
Corresponding author
Rights and permissions
About this article
Cite this article
Kędra, M., Włodarska-Kowalczuk, M. & Węsławski, J.M. Decadal change in macrobenthic soft-bottom community structure in a high Arctic fjord (Kongsfjorden, Svalbard). Polar Biol 33, 1–11 (2010). https://doi.org/10.1007/s00300-009-0679-1
Received:
Revised:
Accepted:
Published:
Issue Date:
DOI: https://doi.org/10.1007/s00300-009-0679-1
Keywords
- Long-term changes
- Diversity
- Soft-bottom macrobenthos
- Arctic