Unusual winter zooplankton bloom in the open southern Adriatic Sea

Unusual winter zooplankton bloom in the open southern Adriatic Sea

The paper reports an unusual response of the microzooplankton community to oceanographic conditions observed during thewinter of 2015 in the open southern Adriatic. Record-breaking nauplii abundance of 13,734 ind. m3was sampled for the open southernAdriatic by 50-μm net sampling. This could be explained by (i) warmer-than-usual surface and intermediate ocean temperatures, (ii)higher precipitation that freshened and widened the surface layer, pushing saline Levantine Intermediate Water below a 400-m depth,and (iii) strong wind episodes that transported nutrients from the coastal zone to the open ocean and induced limited vertical mixing.Neritic tintinnids and viable photoautotrophs well below the photic zone support the last possibility. Average seasonal maximum ofzooplankton abundance was shifted from spring and early summer to the late winter months. Our results document large and fastvariations in production conditions rarely found to occur in oligotrophic waters such as the southern Adriatic Sea.

___

  • Antoine D, Morel A, Andre JM (1995). Algal pigment distribution and primary production in the eastern Mediterranean as derived from coastal zone color scanner observations. J Geophys Res - Ocean 100: 16193-16209.
  • Babić I, Petrić I, Bosak S, Mihanović H, Dupčić Radić I, Ljubešić Z (2017). Distribution and diversity of marine picocyanobacteria community: targeting of Prochlorococcus ecotypes in winter conditions (southern Adriatic Sea). Mar Genomics: doi: 10.1016/j.margen.2017.05.014.
  • Batistić M, Jasprica N, Carić M, Čalić M, Kovačević V, Garić, R, Njire J, Mikuš J, Bobanović-Ćolić S (2012). Biological evidence of a winter convection event in the South Adriatic: a phytoplankton maximum in the aphotic zone. Cont Shelf Res 44: 57-71.
  • Batistić M, Garić R, Molinero JC (2014). Interannual variations in Adriatic Sea zooplankton mirror shifts in circulation regimes in the Ionian Sea. Clim Res 61: 231-240.
  • Benović A, Lučić D, Onofri V, Batistić M, Njire J (2005). Bathymetric distribution of medusae in the open waters of the middle and south Adriatic Sea during spring 2002. J Plankton Res 27: 79-89.
  • Berline L, Siokou-Frangou I, Marasović I, Vidjak O, Fernández de Puelles ML, Mazzocchi MG, Assimakopoulou G, Zervoudaki S, Fonda-Umani S, Conversi A et al. (2012). Intercomparison of six Mediterranean zooplankton time series. Prog Oceanogr 97: 76-91.
  • Bosak S, Bošnjak I, Cetinić I, Mejdandžić M, Ljubešić Z (2016). Diatom community in the depths of the south Adriatic: an injection of carbon by biological pump. 41st CIESM Congress Proceedings, Kiel 2016, 41: p. 274. http://ciesm.org/online/archives/abstracts/ pdf/41/index.php (accessed 11 December 2016).
  • Calbet A 2008. The trophic roles of microzooplankton in marine systems. ICES J Mar Sci 65: 325-331.
  • Cerino F, Bernardi-Aubry F, Coppola J, La Ferla B, Maimone G, Socal G, Totti C (2012). Spatial and temporal variability of pico-, nano-, and microphytoplankton in the Southern Adriatic Sea (Mediterranean Sea). Cont Shelf Res 44: 94-105.
  • Dolan JR (2000). Tintinnid ciliate diversity in the Mediterranean Sea: longitudinal patterns related to water column structure in late spring-early summer. Aquat Microb Ecol 22: 69-78.
  • Duarte CM, Regaudie-de-Gioux A, Arrieta JM, Delgado- Huertes A, Augusti S (2013). The oligotrophic ocean is heterotrophic. Ann Rev Mar Sci 5: 551-569.
  • Dufrene M, Legendre P (1997). Species assemblages and indicator species: the need for a flexible asymmetrical approach. Ecol Monogr 67: 345-366.
  • Gačić M, Civitirarese G, Miserocchi S, Cardin V, Criese A, Mauri E (2002). The open-ocean environment in the Southern Adriatic: controlling mechanisms of the spring phytoplankton bloom. Cont Shelf Res 22: 1897-1908.
  • Gačić M, Eusebi Borzelli G, Civitirarese G, Cardin V, Yari S (2010). Can internal processes sustain reversal of the ocean upper circulation? The Ionian Sea example. Geophys Res Lett 37: eL09608. doi:10.1029/2010GL043216.
  • Giani M, Djakovec T, Degobbis D, Cozzi S, Solidoro C, Fonda Umani S (2012). Recent changes in the marine ecosystems of the northern Adriatic Sea. Estuar Coast Shelf S 115: 1-13.
  • Grbec B, Morović M, Matić F, Ninčević Gladan Ž, Marasović I, Vidjak O, Bojanić N, Čikeš Keč V, Zorica B, Kušpilić G et al. (2015). Climate regime shifts and multi-decadal variability of the Adriatic Sea pelagic ecosystem. Acta Adriat 56: 47-66.
  • Hays G, Richardson AJ, Robinson C (2005). Climate change and marine plankton trends. Ecol Evol 20: 337-344.
  • Hu C, Lee Z, Franz BA (2012). Chlorophyll-a algorithms for oligotrophic oceans: a novel approach based on three-band reflectance difference. J Geophys Res - Ocean 117: eC01011. doi:10.1029/2011JC007395.
  • Hure J (1955). Distribution annuelle verticale du zooplankton sur une station de l’Adriatique méridionale. Acta Adriat 7: 1-72.
  • Hure J, Kršinić F (1998). Planktonic copepods of the Adriatic Sea: spatial and temporal distribution. Nat Croat 7: 1-135.
  • Hure J, Ianora A, Scotto di Carlo B (1980). Spatial and temporal distribution of copepod communities in the Adriatic Sea. J Plankton Res 2: 295-316.
  • Kraus R, Supić N, Lučić D, Njire J (2015). Impact of winter oceanographic conditions on zooplankton abundance in northern Adriatic with implications on Adriatic anchovy stock prognosis. Estuar Coast Shelf Sci 167: 56-66.
  • Krom MD, Emeis KC, Van Cappellen P (2010). Why is the Eastern Mediterranean phosphorus limited? Prog Oceanogr 85: 236-244.
  • Kršinić F 1998. Vertical distribution of protozoan and microcopepod communities in the South Adriatic Pit. J Plankton Res 6: 1033- 1060.
  • Kršinić F (2010). Tintinnids (Tintinnida, Choreotrichia, Ciliata) in the Adriatic Sea, Mediterranean. Acta Adriat (special edition). Split: Institute of Oceanography and Fisheries.
  • Kršinić F, Grbec B (2002). Some distributional characteristics of small zooplankton at two stations in the Otranto Strait (Eastern Mediterranean). Hydrobiologia 482: 119-136.
  • Kršinić F, Grbec B (2006). Horizontal distribution of tintinnids in the open waters of the South Adriatic (Eastern Mediterranean). Sci Mar 70: 77-88.
  • Kršinić F, Grbec B (2012). Spatial distribution of copepod abundance in the epipelagic layer of the south Adriatic Sea. Acta Adriat 53: 57-70.
  • Ljubimir S, Jasprica N, Čalić M, Hrustić E, Dupčić Radić I, Car A, Batistić M (2017). Interannual (2009–2013) variability of winter– spring phytoplankton in the open South Adriatic Sea: effects of deep convection and lateral advection. Cont Shelf Res, doi. org/10.1016/j.csr.2017.05.007.
  • Malanotte-Rizzoli P, Manca BB, Ribera d’Alcala M, Theocaris A, Bergamasco A, Bregant D, Budillon G, Civitarese G, Georgopoulos D, Michelato A (1997). A synthesis of the Ionian Sea hydrography, circulation and water mass pathways during POEM – phase I. Prog Oceanogr 39: 153-204.
  • Marba N, Jorda G, Agusti S, Girard C, Duarte CM (2015). Footprints of climate change on Mediterranean Sea biota. Front Mar Sci 2: doi: 10.3389/fmars.2015.00056.
  • McCune B, Mefford MJ (2006). PC-ORD. Multivariate Analysis of Ecological Data. Version 5.04. Gleneden Beach, OR, USA: MjM Software.
  • Najdek M, Paliaga P, Šilović T, Batistić M, Garić R, Supić N, Ivančić I, Ljubimir S, Korlević M, Jasprica N (2014). Picoplankton community structure before, during and after convection event in the offshore waters of the Southern Adriatic Sea. Biogeosciences 11: 2645-2659.
  • NASA Goddard Space Flight Center, Ocean Ecology Laboratory, Ocean Biology Processing Group (2016). Moderate-resolution Imaging Spectroradiometer (MODIS) Aqua Ocean Color Data; 2014 Reprocessing. NASA OB.DAAC, Greenbelt, MD, USA: doi: 10.5067/AQUA/MODIS_OC.2014.0.
  • Ninčević Gladan Ž, Marasović I, Grbec B, Skejić S, Bužanić M, Kušpilić G, Matijević S, Matić F (2009). Inter-decadal variability in phytoplankton community in the Middle Adriatic (Kaštela Bay) in relation to the North Atlantic Oscillation. Estuar Coasts 33: 376-383.
  • Regner S (1996). Effects of environmental changes on early stages and reproduction of anchovy in the Adriatic Sea. Sci Mar 60: 167- 177.
  • Sinovčić G (2000). Anchovy, Engraulis encrasicolus (Linnaeus, 1758): biology, population dynamics and fisheries case study. Acta Adriat 41: 3-53.
  • Siokou-Frangou I, Christaki U, Mazzocchi MG, Montresor M, Ribera d’Alcalá M, Vaqué D, Zingone A (2010). Plankton in the open Mediterranean Sea: a review. Biogeosciences 7: 1543-1586.
  • Shmeleva AA, Kovalev AV (1974). Cycles biologiques des Copepodes (Crustacea) de la Mer Adriatique. Boll Pesca Piscis Idrobiol 29: 49-70.
  • Utermöhl H (1958) Zur Vervollkommnung der quantitativen Phytoplankton Methodik. Mitteilungen der Internationale Vereinigung für theoretische und angewandte. Limnologie 9: 1-38.
  • Verity PG, Stoecker DK, Sieracki M E, Nelson JR (1993). Grazing, growth and mortality of microzooplankton during the 1989 North Atlantic spring bloom at 47°N, 18°W. Deep-Sea Res I 40: 1793-1814.
  • Vilibić I, Matijević S, Šepić J, Kušpilić G (2012). Changes in the Adriatic oceanographic properties induced by the Eastern Mediterranean Transient. Biogeosciences 9: 2085-2097.
  • Vilibić I, Orlić M (2001). Least-squares tracer analysis of water masses in the South Adriatic (1967–1990). Deep-Sea Res I 48: 2297- 2330.
  • Vilibić I, Šantić D (2008). Deep water ventilation traced by Synechococcus cyanobacteria. Ocean Dynam 58: 119-125.