Seasonal dynamics of sea-ice protist and meiofauna in the northwestern Barents Sea

被引:6
作者
Marquardt, Miriam [1 ]
Goraguer, Lucie [1 ,2 ]
Assmy, Philipp [2 ]
Bluhm, Bodil A. [1 ]
Aaboe, Signe [3 ]
Down, Emily [3 ]
Patrohay, Evan [1 ]
Edvardsen, Bente [4 ]
Tatarek, Agnieszka [5 ]
Smo, Zofia [1 ,5 ]
Wiktor, Jozef [5 ]
Gradinger, Rolf [1 ]
机构
[1] UiT Arctic Univ Norway, Dept Arctic & Marine Biol, Tromso, Norway
[2] Norwegian Polar Res Inst, Fram Ctr, Tromso, Norway
[3] Norwegian Meteorol Inst, Fram Ctr, Tromso, Norway
[4] Univ Oslo, Dept Biosci, Sect Aquat Biol & Toxicol, Oslo, Norway
[5] Polish Acad Sci, Inst Oceanol, Sopot, Poland
关键词
Sympagic; Sea-ice biota; Seasonality; Foraminifers; First-year ice; Ice drift; Barents Sea; ARCTIC-OCEAN; BENTHIC FORAMINIFERA; LAPTEV SEA; POPULATION-DYNAMICS; FAUNAL ASSEMBLAGE; ATLANTIC WATER; HUDSON-BAY; BIOMASS; ALGAE; GREENLAND;
D O I
10.1016/j.pocean.2023.103128
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
The rapid decline of Arctic sea ice makes understanding sympagic (ice-associated) biology a particularly urgent task. Here we studied the poorly known seasonality of sea-ice protist and meiofauna community composition, abundance and biomass in the bottom 30 cm of sea ice in relation to ice properties and ice drift trajectories in the northwestern Barents Sea. We expected low abundances during the polar night and highest values during spring prior to ice melt. Sea ice conditions and Chlorophyll a concentrations varied strongly seasonally, while partic-ulate organic carbon concentrations were fairly stable throughout the seasons. In December to May we sampled growing first-year ice, while in July and August melting older sea ice dominated. Low sea-ice biota abundances in March could be related to the late onset of ice formation and short time period for ice algae and uni-and multicellular grazers to establish themselves. Pennate diatoms, such as Navicula spp. and Nitzschia spp., domi-nated the bottom ice algal communities and were present during all seasons. Except for May, ciliates, di-noflagellates, particularly of the order Gymnodiales, and small-sized flagellates were co-dominant. Ice meiofauna (here including large ciliates and foraminifers) was comprised mainly of harpacticoid copepods, copepod nauplii, rotifers, large ciliates and occasionally acoels and foraminifers, with dominance of omnivore species throughout the seasons. Large ciliates comprised the most abundant meiofauna taxon at all ice stations and seasons (50-90 %) but did not necessarily dominate the biomass. While ice melt might have released and reduced ice algal biomass in July, meiofauna abundance remained high, indicating different annual cycles of protist versus meiofauna taxa. In May highest Chlorophyll a concentrations (29.4 mg m-2) and protist biomass (107 mg C m-2) occurred, while highest meiofauna abundance was found in August (23.9 x 103 Ind. m-2) and biomass in December (0.6 mg C m-2). The abundant December ice biota community further strengthens the emerging notion of an active biota during the dark Arctic winter. The data demonstrated a strong and partially unexpected seasonality in the Barents Sea ice biota, indicating that changes in ice formation, drift and decay will significantly impact the functioning of the ice-associated ecosystem.
引用
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页数:20
相关论文
共 213 条
[1]  
Aaboe S, 2021, J OPER OCEANOGR, V14, pS140
[2]  
AGATHA S, 1993, ACTA PROTOZOOL, V32, P261
[3]  
Ainley D.G., 2003, Sea ice-An introduction to its physics, chemistry, biology and geology, P240
[4]   Snow cover affects ice algal pigment composition in the coastal Arctic Ocean during spring [J].
Alou-Font, Eva ;
Mundy, Christopher-John ;
Roy, Suzanne ;
Gosselin, Michel ;
Agusti, Susana .
MARINE ECOLOGY PROGRESS SERIES, 2013, 474 :89-+
[5]   Seasonality of marine calcifiers in the northern Barents Sea: Spatiotemporal distribution of planktonic foraminifers and shelled pteropods and their contribution to carbon dynamics [J].
Anglada-Ortiz, Griselda ;
Meilland, Julie ;
Ziveri, Patrizia ;
Chierici, Melissa ;
Fransson, Agneta ;
Jones, Elizabeth ;
Rasmussen, Tine L. .
PROGRESS IN OCEANOGRAPHY, 2023, 218
[6]   Under-Ice Phytoplankton Blooms: Shedding Light on the "Invisible" Part of Arctic Primary Production [J].
Ardyna, Mathieu ;
Mundy, C. J. ;
Mayot, Nicolas ;
Matthes, Lisa C. ;
Oziel, Laurent ;
Horvat, Christopher ;
Leu, Eva ;
Assmy, Philipp ;
Hill, Victoria ;
Matrai, Patricia A. ;
Gale, Matthew ;
Melnikov, Igor A. ;
Arrigo, Kevin R. .
FRONTIERS IN MARINE SCIENCE, 2020, 7
[7]   Crustacea in Arctic and Antarctic sea ice: Distribution, diet and life history strategies [J].
Arndt, Carolin E. ;
Swadling, Kerrie M. .
ADVANCES IN MARINE BIOLOGY, VOL 51, 2006, 51 :197-315
[8]  
Arndt Caroline E., 2009, P303
[9]  
Arrigo K.R., 2016, Sea Ice, DOI [10.1002/9781118778371, DOI 10.1002/9781118778371]
[10]   Sea Ice Ecosystems [J].
Arrigo, Kevin R. .
ANNUAL REVIEW OF MARINE SCIENCE, VOL 6, 2014, 6 :439-467