UNCOUPLING THE MICROBIAL LOOP - GROWTH AND GRAZING LOSS RATES OF BACTERIA AND HETEROTROPHIC NANOFLAGELLATES IN THE NORTH-ATLANTIC

被引:76
作者
WEISSE, T
SCHEFFELMOSER, U
机构
关键词
D O I
10.3354/meps071195
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Growth and grazing loss rates of bacteria and heterotrophic nanoflagellates were investigated in the northeast Atlantic in spring 1989. Experiments were conducted in 2 different oligotrophic areas at 18-degrees-N, 30-degrees-W and at 33-degrees-N, 20-degrees-W. Numbers of bacteria and protozoa, namely heterotrophic nanoflagellates (HNF), heterotrophic dinoflagellates and ciliates, were low in both areas, and the average abundance of microorganisms in the euphotic zone varied little. The microbial loop was uncoupled experimentally by differential filtration. Microplankton samples were size-fractionated by gravity filtration and changes in numbers of bacteria and their potential predators were measured in microcosms over several days. Maximum potential growth rates were 0.087 h-1 for bacteria and 0.123 h-1 for HNF. Ingestion rates ranged from 9 to 36 bacteria HNF-1 h-1, clearance rates ranged from 0.3 to 3.0 X 10(-5) ml HNF-1 h-1. Based on the experimental results, 3 modes of control of growth rates and abundances were identified - (1) substrate control: both bacteria and HNF did not grow unless substrates were added; (2) substrate and grazing control both effective: substrate supply via recycled dissolved organic matter enhanced bacterial growth moderately, followed by increasing HNF numbers which reduced the bacterial peak; (3) grazing control: bacterial production was balanced immediately by grazing protozoans, namely HNF, and removal of predators led to a pronounced bacterial peak. Results confirmed the hypothesis of a linear food chain consisting of bacteria - HNF - larger protozoa which is tightly coupled in the natural environment.
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页码:195 / 205
页数:11
相关论文
共 41 条
[21]   CONTROL OF MARINE BACTERIOPLANKTON POPULATIONS - MEASUREMENT AND SIGNIFICANCE OF GRAZING [J].
MCMANUS, GB ;
FUHRMAN, JA .
HYDROBIOLOGIA, 1988, 159 (01) :51-62
[22]  
NAGTA T, 1990, LARGE LAKES ECOLOGIC, P526
[23]   BACTERIAL MORTALITY AND THE FATE OF BACTERIAL PRODUCTION [J].
PACE, ML .
HYDROBIOLOGIA, 1988, 159 (01) :41-49
[24]   THE USE OF DAPI FOR IDENTIFYING AND COUNTING AQUATIC MICROFLORA [J].
PORTER, KG ;
FEIG, YS .
LIMNOLOGY AND OCEANOGRAPHY, 1980, 25 (05) :943-948
[25]   VIRAL MORTALITY OF MARINE-BACTERIA AND CYANOBACTERIA [J].
PROCTOR, LM ;
FUHRMAN, JA .
NATURE, 1990, 343 (6253) :60-62
[26]   PREDATOR-PREY INTERACTIONS OF NANOZOOPLANKTON AND BACTERIA IN AN OLIGOTROPHIC MARINE-ENVIRONMENT [J].
RASSOULZADEGAN, F ;
SHELDON, RW .
LIMNOLOGY AND OCEANOGRAPHY, 1986, 31 (05) :1010-1021
[27]   AN EXPERIMENTAL INVESTIGATION OF A FLAGELLATE-CILIATE-COPEPOD FOOD-CHAIN WITH SOME OBSERVATIONS RELEVANT TO THE LINEAR BIOMASS HYPOTHESIS [J].
SHELDON, RW ;
NIVAL, P ;
RASSOULZADEGAN, F .
LIMNOLOGY AND OCEANOGRAPHY, 1986, 31 (01) :184-188
[28]   TROPHIC INTERACTIONS WITHIN PELAGIC MICROBIAL COMMUNITIES - INDICATIONS OF FEEDBACK-REGULATION OF CARBON FLOW [J].
SHERR, BF ;
SHERR, EB ;
HOPKINSON, CS .
HYDROBIOLOGIA, 1988, 159 (01) :19-26
[29]   TROPHIC INTERACTIONS BETWEEN HETEROTROPHIC PROTOZOA AND BACTERIOPLANKTON IN ESTUARINE WATER ANALYZED WITH SELECTIVE METABOLIC-INHIBITORS [J].
SHERR, BF ;
SHERR, EB ;
ANDREW, TL ;
FALLON, RD ;
NEWELL, SY .
MARINE ECOLOGY PROGRESS SERIES, 1986, 32 (2-3) :169-179
[30]   PROTEIN-CONTENT AND PROTEIN-SYNTHESIS RATES OF PLANKTONIC MARINE-BACTERIA [J].
SIMON, M ;
AZAM, F .
MARINE ECOLOGY PROGRESS SERIES, 1989, 51 (03) :201-213