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Density dependent growth of the red algae Furcellaria lumbricalis and Coccotylus truncatus in the West Estonian Archipelago Sea, northern Baltic Sea

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In an in situ experiment we evaluated the growth of the red algae Furcellaria lumbricalis and Coccotylus truncatus in the Archipelago Sea. The results showed that the growth rates of both species were similar but that growth decreased with increasing algal coverage. The effects were more pronounced for C. truncatus than for F. lumbricalis. Economic analyses aiming to establish sustainable harvesting limits for F. lumbricalis in the study area should take account of the density dependent growth of these red algae.
Słowa kluczowe
Czasopismo
Rocznik
Strony
577--585
Opis fizyczny
bibliogr. 30 poz., tab., wykr.
Twórcy
autor
autor
autor
autor
autor
autor
  • Estonian Marine Institute, University of Tartu, Mäealuse 10a, EE-12618 Tallinn, Estonia, jonne.kotta@sea.ee
Bibliografia
  • Austin A.P., 1960a, Life history and reproduction of Furcellaria fastigiata (L.) Lam. 2. The tetrasporophyte and reduction division in the tetrasporangium, Ann. Bot. NS, 24, 296-310.
  • Austin A.P., 1960b, Observations on the growth, fruiting and longevity of Furcellaria fastigiata (L.) Lam, Hydrobiologia, 15 (3), 193-207.
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  • Bird C. J., Saunders G.W., McLachlan J., 1991, Biology of Furcellaria lumbricalis (Hudson) Lamouroux (Rhodophyta: Gigartinales), a commercial carrageenophyte, J. Appl. Phycol., 3 (1), 61-82.
  • Bird N. L., Chen L.C. -M., McLachlan J., 1979, Effects of temperature, light and salinity on growth in culture of Chondrus crispus, Furcellaria lumbricalis, Gracilaria tikvahiae (Gigartinales, Rhodophyta) and Fucus serratus (Fucales, Phaeophyta), Bot. Mar., 22, 521-527.
  • Blinova E. I., 1977, Growth characteristics of Furcellaria fastigiata (Huds.) Lamour. in Gulf of Riga, U.S.S.R, Rastit. Resur., 13, 113-119, (in Russian).
  • Cousens R., Hutchings M. J., 1983, The relationship between density and mean frond weight in monospecific seaweed stands, Nature, 301 (5897), 240-241.
  • Dudgeon S.R., Steneck R. S., Davison I.R., Vadas R. L., 1999, Coexistence of similar species in a space-limited intertidal zone, Ecol. Monogr., 69 (3), 331-352.
  • Engkvist R., Malm T., Nilsson J., 2004, Interaction between isopod grazing and wave action: a structuring force in macroalgal communities in the southern Baltic Sea, Aquat. Ecol., 38 (3), 403-413.
  • Enright C.T., 1979, Competitive interaction between Chondrus crispus (Florideophyceae) and Ulva lactuca (Chlorophyceae) in Chondrus aquaculture, Proc. Int. Seaweed Symp., 9, 209-218.
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  • Indergaard M., Knutsen S.H., 1990, Seasonal differences in ash, carbon, fibre and nitrogen components of Furcellaria lumbricalis (Gigartinales, Rhodophyceae), Norway, Bot. Mar., 33, 327-334.
  • Kim H. J., 2002, Mechanisms of competition between canopy-forming and turfforming intertidal algae, Algae, 17, 33-39.
  • King R. J., Schramm W., 1976, Photosynthetic rates of benthic marine algae in relation to light intensity and seasonal variations, Mar. Biol., 37 (3), 215-222.
  • Kotta J., Jaanus A., Kotta I., 2008, Haapsalu and Matsalu Bay, [in:] Ecology of Baltic coastal waters, U. Schiewer (ed.), Springer-Verlag, Berlin-Heidelberg, Ecol. Stud. 197, 245-258.
  • Kotta J., Lauringson V., Kotta I., 2007, Response of zoobenthic communities to changing eutrophication in the northern Baltic Sea, Hydrobiologia, 580 (1), 97-108.
  • Kotta J., Orav H., 2001, Role of benthic macroalgae in regulating macrozoobenthic assemblages in the V¨ainameri (north-eastern Baltic Sea), Ann. Zool. Fenn., 38 (2), 163-171.
  • Lauringson V., Kotta J., 2006, Influence of the thin drift algal mats on the distribution of macrozoobenthos in K˜oiguste Bay, NE Baltic Sea, Hydrobiologia, 554 (1), 97-105.
  • Lobban C. S., Harrison P. J., 2000, Seaweed ecology and physiology, Cambridge Univ. Press, Cambridge, 366 pp.
  • Martin G., 2000, Phytobenthic communities of the Gulf of Riga and the inner sea of the West-Estonian Archipelago, Diss. Biol. Univ. Tartu. 64, Tartu Univ. Press, Tartu.
  • Martin G., Paalme T., Torn K., 2006, Growth and production rates of loose-lying and attached forms of the red algae Furcellaria lumbricalis and Coccotylus truncatus in Kassari Bay, the West Estonian Archipelago Sea, Hydrobiologia, 554 (1), 107-115.
  • Orav-Kotta H., Kotta J., 2004, Food and habitat choice of the isopod Idotea baltica in the northeastern Baltic Sea, Hydrobiologia, 514 (1-3), 79-85.
  • Paalme T., 1994, Net photosynthesis and production of Furcellaria lumbricalis in Kassari Bay, Estonia, Proc. Estonian Acad. Sci. Biol., 43 (4), 193-198.
  • Piazzi L., Ceccherelli G., 2002, Effects of competition between two introduced Caulerpa, Mar. Ecol.-Prog. Ser., 225, 189-195.
  • Reed D.C., Neushul M., Ebeling A.W., 1991, Role of settlement density on gametophyte growth and reproduction in the kelps Pterygophora californica and Macrocystis pyrifera (Phaeophyceae), J. Phycol., 27 (3), 361-366.
  • Rueness J., Tanager T., 1984, Growth in culture of four red algae from Norway with potential for mariculture, Hydrobiologia, 116/117 (1), 303-307.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0015-0005
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