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Winter aspects of the ichthyoplankton community in Antarctic Peninsula waters

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Summary

Ichthyoplankton was sampled from the Antarctic Peninsula area of the South Polar Ocean in early winter (May and June 1986). A total of 153 eggs from two species and 1368 larvae or juvenile stages from 12 species were obtained. These included pelagic species, and demersal species with a long pelagic larval or juvenile phase. Most abundant were larvae of Pleuragramma antarcticum and Notothenia kempi, and eggs of Notothenia neglecta. The distribution of notothenioid and paralepidid larvae was apparently unaffected by ice cover, whereas myctophid larvae were confined to ice-free waters. Areas where newly hatched Chionodraco hamatus occurred coincided with dense aggregations of Euphausia superba (Krill) furcilia larvae which is a potential food resource during winter. The hatching of icefish larvae during winter is apparently independent of the seasonal production cycle. Epipelagic eggs of Notothenia neglecta were found during the spawning season, which suggests that eggs ascend to the surface after demersal spawning and that development takes place near the sea surface during winter. Larvae of Notothenia kempi were chiefly confined to shelf and slope waters to the west of the Antarctic Peninsula, with larger larvae found in coastal shelf areas. Pleuragramma antarcticum occurred in the coastal waters off the Biscoe Islands, in the Gerlache Strait, and in the northern Bransfield Strait. The smallest larvae were found in the northern Bransfield Strait, whereas those at the Biscoe Islands and in Gerlache Strait waters were larger and of a similar size. A cyclonic gyre to the west of the Antarctic Peninsula observed in the austral summer was likely to have affected the larval drift of Pleuragramma antarcticum and Notothenia kempi. Differences in the timing of spawning and hatching and the vertical distribution of these larvae will lead to different transport and spatial distribution patterns. It is hypothesized that early winter conditions do not imply severe limitations on the year-class success of larval fish. Dispersal and increased mortality may occur during the second half of the winter.

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References

  • Asencio V, Mujica A (1986) Ictioplancton del estrecho Bransfield (SIBEX-Fase II-Chile). Ser Cient INACH 35:105–110

    Google Scholar 

  • Anonymous (1983) Second Post-FIBEX Hydrographic Data Interpretation Workshop. Hamburg, FRG, 16–20 May 1983. BIOMASS Rep Ser 31:27 pp

  • Baker A deC, Clarke MR, Harris MJ (1973) The N.I.O. Combination net (RMT 1+8) and further developments of rectangular midwater Trawls. J Mar Biol Assoc UK 53:167–184

    Google Scholar 

  • Bolz GR, Lough RG (1984) Retention of ichthyoplankton in the Georges Bank region during the autumn-winter seasons, 1971–77. J Northw Atl Fish Sci 5:33–45

    Google Scholar 

  • Deacon GER (1937) The hydrology of the Southern Ocean. Discovery Rep 15:1–124

    Google Scholar 

  • DeWitt HH (1971) Coastal and deep water benthic fishes of the Antarctic. Antarct Map Fol Ser 15 (Am Geogr Soc)

  • DeWitt HH, Hureau JC (1979) Fishes collected during ‘Hero’ cruise 72–2 in the Palmer Archipelago, Antarctica, with the description of two new genera and three new species. Bull Mus Nat. Hist Nat Paris 1A:775–820

    Google Scholar 

  • Eastman JT (1985) Pleuragramma antarcticum (Pisces, Nototheniidae) as food for other fishes in McMurdo Sound, Antarctica. Polar Biol 4:155–160

    Google Scholar 

  • Efremenko VN (1979a) Description of the larvae of six species of the family Chaenichthyidae from the Scotia Sea. J Ichthyol 19:65–75

    Google Scholar 

  • Efremenko VN (1979b) The larvae of six species of the family Nototheniidae from the Scotia Sea. J Ichthyol 19:95–104

    Google Scholar 

  • Ekau W (1989) Egg development of Trematomus eulepidotus Regan, 1914 (Nototheniidae, Pisces) from the Weddell Sea, Antarctica. Cybium 13:213–219

    Google Scholar 

  • Heywood RB (1985) Environmental conditions in the Antarctic Peninsula area of the Southern Ocean during the Anglo-German Joint Biological Expedition, February 1982. Meeresforschung 30:220–239

    Google Scholar 

  • Hopkins TL (1985) The Zooplankton community of Croker Passage, Antarctic Peninsula. Polar Biol 4:161–170

    Google Scholar 

  • Hubold G (1984) Spatial distribution of Pleuragramma antarcticum (Pisces: Nototheniidae) near the Filchner and Larsen ice shelves (Weddell Sea, Antarctica). Polar Biol 3: 231–236

    Google Scholar 

  • Kellermann A (1986a) On the biology of early life stages of notothenioid fishes (Pisces) off the Antarctic Peninsula. Ber Polarforsch 31:149 pp

    Google Scholar 

  • Kellermann A (1986b) Geographical distribution and abundance of postlarval and juvenile Pleuragramma antarcticum (Pisces; Notothenioidei) off the Antarctic Peninsula. Polar Biol 6:1–119

    Google Scholar 

  • Kellermann A (1989a) The larval fish community in the zone of seasonal ice cover and its seasonal and interannual variability. Arch Fischerciwiss 39:89–109

    Google Scholar 

  • Kellermann A (1989b) Fish eggs and larvae. In: Hempel I (ed) The expedition Antarktis VII/1 and 2 (EPOS I) of RV ‘Polarstern’ in 1988/1989. Ber Polarforsch 62:157–158

  • Kellermann A (1990) Catalogue of early life stages of Antarctic notothenioid fishes. Ber Polarforsch 67:44–136 (also published in BIOMASS Sci Ser 10)

    Google Scholar 

  • Kellermann A, Kock K-H (1988) Patterns of spatial and temporal distribution and their variation in early life stages of Antarctic fish in the Antarctic Peninsula region. In: Sahrhage D (ed) Antarctic Ocean and resources variability. Springer, pp 147–159

  • Kendall AW, Ahlstrom EH, Moser HG (1984) Early life history stages of fishes and their characters. Am Soc Ichthyol Herpet Spec Publ 1:11–22

    Google Scholar 

  • Kock K-H (1989) Reproduction in fish around Elephant Island. Arch Fischeriewiss 39:171–210

    Google Scholar 

  • Kock K-H, Stein M (1978) Krill and hydrographie conditions off the Antarctic Peninsula. Meeresforschung 26:79–95

    Google Scholar 

  • Legendre L, Demers S (1984) Towards dynamic biological oceanography and limnology. Can J Fish Aquat Sci 41:2–19

    Google Scholar 

  • Lisovenko, LA (1980) Some data on the reproduction of Electrona antarctica from the Scotia Sea. ONTI VNIRO 1980:33–38 (in Russian)

    Google Scholar 

  • Lubimova, TG, Shust, KV, Troganovskij, FM, Semenov, AB (1982) The ecology of mass species of myctophids from the atlantic Antarctic. Antarktika 22:99–106 (in Russian)

    Google Scholar 

  • Makarov RR, Maslennikov VV, Solyankin EV, Spiridonov VA, Yakovlev VN (1988) Variability in populatin density of Antarctic Krill in the western Scotia Sea in relation to hydrological conditions. In: Sahrhage D (ed) Antarctic Ocean and resources variability. Springer, pp231–236

  • North AW. Kellermann A (1990) Key to the early stages of Antarctic, fishes. Ber Polarforsch 67:1–44 (also published in BIOMASS Sci Ser 10)

    Google Scholar 

  • North AW, Ward P (1989) Initial feeding by Antarctic fish larvae during winter at South Georgia. Cybium 13:357–364

    Google Scholar 

  • Pappenheim P (1912) Die Fische der Deutschen Südpolar-Expedition 1901–1903. I. Die Fische der Antarktis und Subantarktis. Dtsch Südpol Exped 1901–1903 XIII, Zool 5:161–182

    Google Scholar 

  • Pommeranz T, Herrmann C, Kühn A (1982) Mouth angles of the Rectangular Midwater Trawl (RMT 1+8) during paying out and hauling. Meeresforschung 29:267–274

    Google Scholar 

  • Regan CT (1916) Larval and post-larval fishes. Antarctic and subantarctic fishes. Nat Hist Rep Br Antarct Terra Nova' Exped 1910, Zool I:125–156

    Google Scholar 

  • Rembiszewski JM, Krzeptowski M, Linkowski TB (1978) Fishes (Pisces) as by-catch in fisheries of krill Euphausia superba Dana (Euphausiacea, Crustacea). Pol Arch Hydrobiol 25:677–695

    Google Scholar 

  • Riehl R, Kock K-H (1989) The surface structure of Antarctic fish eggs and its use in identifying fish eggs from the Southern Ocean. Polar Biol 9:197–203

    Google Scholar 

  • Sahrhage D (1989) Research on krill, fish resources and oceanographic conditions in the Antarctic Peninsula region in 1986 and 1987-A cruise report. Arch Fischereiwiss 39:5–14

    Google Scholar 

  • Siegel, V (1989) Winter and spring distribution and status of the krill stock in Antarctic Peninsula waters. Arch Fischereiwiss 39:45–72

    Google Scholar 

  • Sinque C, Koblitz S, Costa LM (1986) Distribution of larval and postlarval Antarctic fishes around Elephant Island and Bransfield Strait-Antarctica. Neritica Pontal Sul PR 1:103–110

    Google Scholar 

  • Slosarczyk W (1986) Attempts at a quantitative estimate by trawl sampling of distribution of postlarval and juvenile notothenioids (Pisces, Perciformes) in relation to environmental conditons in the Antarctic Peninsula region during SIBEX 1983–84. Mem Natl Inst Polar Res, Spec Issue 40:299–315

    Google Scholar 

  • Slosarczyk W (1987) Contribution to the early life history of Channichthyidae from the Bransfield Strait and South Georgia (Antarctica). Proc Vth (Congr Europ Ichthyol, Stockholm 1985), pp 427–433

  • Sokal RR, Rohlf FJ (1969) Biometry. WH Freeman, New York, 859 PP

    Google Scholar 

  • Stein M (1988) Variation of geostrophic circulation off the Antarctic Peninsula and in the southwest Scotia Sea, 1975–1985. In: Sahrhage D (ed) Antarctic Ocean and resources variability. Springer, pp 81–91

  • Stein M (1989) Seasonal variation of water masses in Bransfield Strait and adjacent waters. Arch Fischereiwiss 39:15–38

    Google Scholar 

  • Townsend DW, Radtke RL, Morrison MA, Folsom SD (1989) Recruitment implications of larval herring overwintering distributions in the Gulf of Maine, inferred using a new otolith technique. Mar Ecol Prog Ser 55:1–13

    Google Scholar 

  • White MG, North AW (1987) Postlarval Notothenioidei and midwater fish collected during the SIBEX cruise by British Antarctic Survey, 1985. Proc Vth Congr Europ Ichthyol, Stockholm 1985, pp 405–411

  • Witek Z, Kalinowski, J, Grelowski A, Wolnomierski N (1981) Studies of aggregations of krill (Euphausia superba). Meeresforschung 28:228–243

    Google Scholar 

  • Witek Z, Kalinowski J, Grelowski A (1988) Formation of Antarctic Krill concentrations in relation to hydrodynamic processes and social behaviour. In: Sahrhage D (ed) Antarctic Ocean and resources variability. Springer, pp 237–244

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Kellermann, A., Schadwinkel, S. Winter aspects of the ichthyoplankton community in Antarctic Peninsula waters. Polar Biol 11, 117–127 (1991). https://doi.org/10.1007/BF00234274

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