Net accumulation and flux of dissolved organic carbon and dissolved organic nitrogen in marine plankton communities

被引:114
|
作者
Sondergaard, M
Williams, PJL
Cauwet, G
Riemann, B
Robinson, C
Terzic, S
Woodward, EMS
Worm, J
机构
[1] Univ Copenhagen, Freshwater Biol Lab, DK-3400 Hillerod, Denmark
[2] Univ Coll N Wales, Sch Ocean Sci, Menai Bridge LL59 5EY, Gwynedd, Wales
[3] Univ Paris 06, CNRS, UMR 7621, Observ Oceanol Banyuls, F-66651 Banyuls sur Mer, France
[4] Dept Marine Ecol & Microbiol, Natl Environm Res Inst, DK-4000 Roskilde, Denmark
[5] Plymouth Marine Lab, CCMS, Plymouth PL1 3DH, Devon, England
[6] Rudjer Boskovic Inst, Ctr Marine & Environm Res, Zagreb 10000, Croatia
关键词
D O I
10.4319/lo.2000.45.5.1097
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Marine mesocosms were manipulated with inorganic nutrients over a period of 22 d to investigate organic carbon partitioning under a variety of nutrient regimes. The chemical analyses and biotic measurements included inorganic nutrients, pigment signatures, particulate and dissolved organic species, bacterial production, and community respiration. The biodegradability of dissolved organic carbon (DOC) was investigated with in vitro decomposition experiments. The net particulate organic carbon (POC) production was 50% of the total organic production during the initial 6 d of nutrient-replete growth and during a major diatom bloom. In all other situations the carbon partitioning was strongly in favor of DOC, which accounted for 82 to 111% of the total production. The production of new DOC preceded new DON by about 1 week. Thus, the new dissolved organic matter (DOM) initially had an infinite C:N ratio, which fell to 11-20 when DON started to accumulate. The highest C:N ratio was measured during a nutrient-replete diatom bloom. Dissolved polysaccharides accounted for 50 to 70% of the new DOC, and the lowest relative amount was produced during a diatom bloom. The chemical analyses unequivocally demonstrated that carbon partitioning in favor of carbon-rich DOM can take place during an active diatom bloom and not only during the decay of a bloom. The DOC-producing mechanisms cannot be fully identified. However, during the different growth phases the DOC production varied, as did the speciation of DOM with respect to the C:N ratios. When net production of dissolved organic nitrogen (DON) was detected after 11 d, the DON production accounted for 25 to 50% of the daily added and assimilated inorganic nitrogen. The measurements of community respiration made it possible to calculate the maximum carbon recycling by bacteria and bacterial net DOC assimilation. These calculations showed the estimates of carbon partitioning to be very sensitive to bacterial growth yield values and the factors used to convert leucine and thymidine isotope incorporation to bacterial production. Decomposition experiments showed that at least 35% of the new DOC was biodegradable over 10-12 d and that inorganic nutrients only marginally affected use. The calculated turnover times of new DOC were between 15 and 25 d. The semilabile nature of new DOC with respect to microbial attack is suggested as the main reason for the medium-term accumulation of new DOC.
引用
下载
收藏
页码:1097 / 1111
页数:15
相关论文
共 50 条
  • [21] Dissolved organic carbon and dissolved nitrogen in soil under different fertilization treatments
    Gonet, S. S.
    Debska, B.
    PLANT SOIL AND ENVIRONMENT, 2006, 52 (02) : 55 - 63
  • [22] Influence of Dissolved Organic Matter Sources on In-Stream Net Dissolved Organic Carbon Uptake in a Mediterranean Stream
    Lupon, Anna
    Catalan, Nuria
    Marti, Eugenia
    Bernal, Susana
    WATER, 2020, 12 (06)
  • [23] Photochemical reactivity of ancient marine dissolved organic carbon
    Beaupre, Steven R.
    Druffel, Ellen R. M.
    GEOPHYSICAL RESEARCH LETTERS, 2012, 39
  • [24] Latitudinal Gradients in Degradation of Marine Dissolved Organic Carbon
    Arnosti, Carol
    Steen, Andrew D.
    Ziervogel, Kai
    Ghobrial, Sherif
    Jeffrey, Wade H.
    PLOS ONE, 2011, 6 (12):
  • [25] Marine dissolved organic carbon: Are the older values correct?
    Sharp, JH
    MARINE CHEMISTRY, 1997, 56 (3-4) : 265 - 277
  • [26] Production of dissolved organic carbon by Arctic plankton communities: Responses to elevated carbon dioxide and the availability of light and nutrients
    Poulton, Alex J.
    Daniels, Chris J.
    Esposito, Mario
    Humphreys, Matthew P.
    Mitchell, Elaine
    Ribas-Ribas, Mariana
    Russell, Benjamin C.
    Stinchcombe, Mark C.
    Tynan, Eithne
    Richier, Sophie
    DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 2016, 127 : 60 - 74
  • [27] Aged black carbon identified in marine dissolved organic carbon
    Ziolkowski, L. A.
    Druffel, E. R. M.
    GEOPHYSICAL RESEARCH LETTERS, 2010, 37
  • [28] Dissolved Organic Nitrogen Concentrations and Ratios of Dissolved Organic Carbon to Dissolved Organic Nitrogen in Throughfall and Soil Waters in Norway Spruce and Scots Pine Forest Stands Throughout Norway
    Yijie Wu
    Nicholas Clarke
    Jan Mulder
    Water, Air, & Soil Pollution, 2010, 210 : 171 - 186
  • [29] Dissolved Organic Nitrogen Concentrations and Ratios of Dissolved Organic Carbon to Dissolved Organic Nitrogen in Throughfall and Soil Waters in Norway Spruce and Scots Pine Forest Stands Throughout Norway
    Wu, Yijie
    Clarke, Nicholas
    Mulder, Jan
    WATER AIR AND SOIL POLLUTION, 2010, 210 (1-4): : 171 - 186
  • [30] Chronic nitrogen addition promotes dissolved organic carbon accumulation in a temperate freshwater wetland
    Mao, Rong
    Zhang, Xin-Hou
    Song, Chang-Chun
    ENVIRONMENTAL POLLUTION, 2020, 260