PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Microphytobenthic primary production along a non-tidal sandy beach gradient : an annual study from the Baltic Sea

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The microphytobenthic primary production and chlorophyll a content were studied over the annual cycle (May 1998 - May 1999) on a non-tidal Baltic sandy beach at three stations along the beach gradient: littoral, waterline and splash zone. The chlorophyll a concentrations varied between 0.88 and 12.18 žg cm-3. Net and gross primary production rates respectively lay within the ranges 0.1-31.4 mgC m-2 h-1 and 0.2-41.8 mgC m-2 h-1. The highest values of both Chl a content and primary production were noted at the littoral station, the lowest ones at the waterline. The mean annual P/B ratio was highest at the waterline. The differences in Chl a content between stations were statistically significant and may be related to water dynamics, resuspension and water content. Production rates were highly variable on monthly time scales, and the highest results at all the study locations were noted in July. The gross photosynthetic rates were significantly correlated with water temperature.
Czasopismo
Rocznik
Strony
705--720
Opis fizyczny
Bibliogr. 38 poz., rys., tab., wykr.
Twórcy
  • Centre for Ecological Research, Polish Academy of Sciences, Dziekanów Leśny, Konopnickiej 1, PL-05-092 Łomianki, Poland
autor
  • Institute of Oceanology, Polish Academy of Sciences, Powstańców Warszawy 55, PL-81-712 Sopot, Poland
Bibliografia
  • [1] Barranguet C., Herman P. M. J., Sinke J. J., 1997, Microphytobenthos biomass and community composition studied by pigment biomarkers: importance and fate in the carbon cycle of a tidal flat, J. Sea Res., 38, 59-70.
  • [2] Barranguet C., Kromkamp J., Peene J., 1998, Factors controlling primary production and photosynthetic characteristics of intertidal microphytobenthos, Mar. Ecol. Prog. Ser., 173, 117-126.
  • [3] Cadée G. C., Hegeman J., 1974, Primary production of the benthic microflora living on tidal flats in the Dutch Wadden Sea, Neth. J. Sea Res., 8, 260-291.
  • [4] Cadée G. C., Hegeman J., 1977, Distribution of primary production of the benthic microflora and accumulation of organic matter on a tidal flat area, Balgzand, Dutch Wadden Sea, Neth. J. Sea Res., 11 (1), 24-41.
  • [5] Cahoon L. B., Safi K. A., 2002, Distribution and biomass of benthic microalgae in Manukau Harbour, New Zealand, New Zealand J. Mar. Freshw. Res., 36 (2), 257-266.
  • [6] Charpy-Roubaud C. J., Sournia A., 1990, The comparative estimation of phytoplanktonic, microphytobenthic and macrophytobenthic primary production in the oceans, Mar. Microbiol. Food Webs, 4, 31-57.
  • [7] Conde D., Bonilla S., Aubriot L., de León R., Pintos W., 1999, Comparison of the areal amount of chlorophyll a of planktonic and attached microalgae in a shallow coastal lagoon, Hydrobiologia, 408/409, 285-291.
  • [8] Cyberska B., 1990, Salinity of the Gdańsk Basin, [in:] The Gulf of Gdańsk, A. Majewski (ed.), Inst. Meteor. i Gosp. Wod., Wyd. Geol., Warszawa, 237-255, (in Polish).
  • [9] Dale T., 1978, Total, chemical and biological oxygen consumption of the sediments in Lindaspollene, western Norway, Mar. Biol., 49, 333-341.
  • [10] de Brouwer J. F. C., Stal L. J., 2001, Short-term dynamics in microphytobenthos distribution and associated extracellular carbohydrates in surface sediments of an intertidal mudflat, Mar. Ecol. Prog. Ser., 218, 33-44.
  • [11] de Jonge V. N., van Beusekom J., 1995, Wind- and tide-induced resuspension of sediment and microphytobenthos from tidal flats in the Ems Estuary, Limnol. Oceanogr., 40 (4), 766-778.
  • [12] Goto N., Mitamura O., Terai H., Ishida N., 1998, Physicochemical features and primary production of microphytobenthos and phytoplankton at Wakaura tidal flat in Japan, Jpn. J. Limnol., 59, 391-408.
  • [13] Grant J., 1986, Sensitivity of benthic community respiration and primary production to changes in temperature and light, Mar. Biol., 90, 299-306.
  • [14] Heip C. H. R., Goosen N. K., Herman P. M. J., Kromkamp J., Middelburg J. J., Soetaert K., 1995, Production and consumption of biological particles in temperate tidal estuaries, Oceanogr. Mar. Biol. Ann. Rev., 33, 1-149.
  • [15] Herman P. M. J., Middelburg J. J., van de Koppel J., Heip C. H. R., 1999, Ecology of estuarine macrobenthos, Adv. Ecol. Res., 29, 195-240.
  • [16] Jankowska K., 2001, Ekosystem plaż piaszczystych Zatoki Gdańskiej jako środowisko występowania bakterii heterotroficznych, Praca doktorska (Ph. D. thesis), Politechnika Gdańska, Gdańsk.
  • [17] Jędrzejczak M. F., 1999, The degradation of stranded carrion on a Baltic Sea sandy beach, Oceanol. Stud., 28 (3)-(4), 109-141.
  • [18] Jędrzejczak M. F., 2002, Spatio-temporal decay ‘hot spots’ of stranded wrack in a Baltic sandy coastal system. Part I. Comparative study of the pattern: 1 type of wrack vs 3 beach sites, Oceanologia, 44 (4), 491-512.
  • [19] Kaczmarek S., Dera J., 1998, Radiation flux balance of the sea-atmosphere system over the southern Baltic Sea, Oceanologia, 40 (4), 277-306.
  • [20] Kramer K. J. M., Brockmann U. H., Warwick R. M., 1994, Tidal estuaries – Manual of sampling and analytical procedures, Balkema Publ., Rotterdam-Brookfield, 304 pp.
  • [21] Köster M., Meyer-Reil L-A., 2001, Characterization of carbon and microbial biomass pools in shallow water coastal sediments of the southern Baltic Sea (Nordrügensche Bodden), Mar. Ecol. Prog. Ser., 214, 25-41.
  • [22] Lorenzen C. J., 1967, Determination of chlorophyll and pheopigments: spectrophotometric equations, Limnol. Oceanogr., 12, 343-346.
  • [23] Lucas C. H., Holligan P. M., 1999, Nature and ecological implications of algal pigment diversity on the Molenplaat tidal flat (Westerschelde estuary, SW Netherlands), Mar. Ecol. Prog. Ser., 180, 51-64.
  • [24] MacIntyre H. L., Cullen J. J., 1995, Fine scale vertical resolution of chlorophyll and photosynthetic parameters in shallow-water benthos, Mar. Ecol. Prog. Ser., 122, 227-237.
  • [25] MacIntyre H. L., Geider R. J., Miller D. G., 1996, Microphytobenthos: the ecological role of the ‘secret garden’ of unvegetated, shallow-water marine habitats. I. Distribution, abundance and primary production, Estuaries, 19 (2A) 186-201.
  • [26] Meyercordt J., Meyer-Reil L. A., 1999, Primary production of benthic microalgae in two shallow coastal lagoons of different trophic status in the Southern Baltic Sea, Mar. Ecol. Prog. Ser., 178, 179-191.
  • [27] Middelburg J. J., Barranguet C., Boschker H. T. S., Herman P. M. J., Moens T., Heip C. H. R., 2000, The fate of intertidal microphytobenthos carbon: an in situ 13C labelling study, Limnol. Oceanogr., 45 (6), 1224-1234.
  • [28] Montani S., Magni P., Abe N., 2003, Seasonal and interannual patterns of intertidal microphytobenthos in combination with laboratory and areal production estimates, Mar. Ecol. Prog. Ser., 249, 79-91.
  • [29] Pamatmat M. M., 1968, Ecology and metabolism of a benthic community on an intertidal sandflat, Int. Rev. ges. Hydrobiol., 53, 211-298.
  • [30] Pliński M., Kwiatkowski J., 1996, Microphytobenthos of the shallow littoral of the Southern Baltic, Oceanol. Stud., 25 (4), 65-79.
  • [31] Renk H., Ochocki S., 1998, Photosynthetic rate and light curves of phytoplankton in the southern Baltic, Oceanologia, 40 (4), 331-344.
  • [32] Steele J. H., Baird E. I., 1968, Production ecology of a sandy beach, Limnol. Oceanogr., 13 (1), 14-25.
  • [33] Sundbäck K., 1984, Distribution of microbenthic chlorophyll a and diatoms species related to sediment characteristics, Ophelia, Suppl. 3, 229-246.
  • [34] Urban-Malinga B., Opaliński K. W., 2001, Interstitial community oxygen consumption in a Baltic sandy beach: horizontal zonation, Oceanologia, 43 (4), 455-468.
  • [35] Urban-Malinga B., Opaliński K. W., 2002, Seasonal changes of interstitial community respiration in a Baltic sandy beach, Oceanol. Stud., 31 (3)-(4), 57-70.
  • [36] Wasmund N., 1986, Ecology and bioproduction in the microphytobenthos of the chain of shallow inlets (Boddens) south of the Darss-Zingst Peninsula (Southern Baltic Sea), Int. Rev. ges. Hydrobiol., 71 (2), 153-178.
  • [37] Wasmund N., 1989, Live algae in deep sediment layers, Int. Rev. ges. Hydrobiol., 74 (6), 589-597.
  • [38] Yap H. T., 1991, Benthic energy dynamics in a southern Baltic ecosystem, Mar. Biol., 108, 477-484.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0013-0089
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.