Seasonal succession and taxon-specific bacterial grazing rates of heterotrophic nanoflagellates in Lake Constance

被引:56
作者
Cleven, EJ [1 ]
Weisse, T [1 ]
机构
[1] Univ Konstanz, Inst Limnol, D-78457 Cologne, Germany
关键词
heterotrophic nanoflagellates (HNF); seasonal succession; FLB; grazing rate; negative binomial distribution; Lake Constance;
D O I
10.3354/ame023147
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
We investigated the taxonomic composition of the heterotrophic nanoflagellate (HNF) assemblage and its taxon-specific bacterial grazing rates in Lake Constance (Germany) over the course of 1 yr. Bacterial grazing rates were measured using natural fluorescently labelled bacteria (FLB) and compared to bacterial production estimated by the uptake of C-14-leucine incorporation. Glutaraldehyde-fixed, DAPI-stained flagellates were counted using epifluorescence microscopy. Based on annual averages, small species such as Spumella sp. (2 to 6 mum) were the most numerous HNF and the dominant bacterivores. Larger flagellates such as Kathablepharis sp, contributed significantly to total HNF biomass, in particular during spring, but were relatively unimportant as bacterial grazers. The HNF community structure changed during the transition from the phytoplankton spring bloom to the clearwater phase, with small flagellates such as heterokonts, kinetoplastids and choanoflagellates becoming increasingly abundant. The flagellate community composition was more diverse during summer and autumn than in spring. Per capita ingestion rates ranged from 0 to 31 bacteria HNF-1 h(-1) and changed seasonally up to 10-fold within a given taxon. Mixotrophic species contributed little to total bacterivory. We provide evidence that the relative significance of bacterial ingestion by a given flagellate taxon may change seasonally. Based upon our experimental results, we discuss potential shortcomings inherent in the FLB technique.
引用
收藏
页码:147 / 161
页数:15
相关论文
共 86 条
[71]  
Sleigh M, 1973, BIOL PROTOZOA
[72]  
STRAILE D, 1995, THESIS U KONSTANZ HA
[73]  
Straile Dietmar, 1998, Advances in Limnology, V53, P545
[74]   THE SEASONAL PRODUCTIVITY CYCLE OF PHYTOPLANKTON AND CONTROLLING FACTORS IN LAKE CONSTANCE [J].
TILZER, MM ;
BEESE, B .
SCHWEIZERISCHE ZEITSCHRIFT FUR HYDROLOGIE-SWISS JOURNAL OF HYDROLOGY, 1988, 50 (01) :1-39
[75]  
Utermohl H., 1958, Mitt. int. Ver. theor. angew. Limnol, V9, P1
[76]   GRAZING ON BACTERIA BY FLAGELLATES AND CLADOCERANS IN LAKES OF CONTRASTING FOOD-WEB STRUCTURE [J].
VAQUE, D ;
PACE, ML .
JOURNAL OF PLANKTON RESEARCH, 1992, 14 (02) :307-321
[77]   GRAZING RATES ON BACTERIA - THE SIGNIFICANCE OF METHODOLOGY AND ECOLOGICAL FACTORS [J].
VAQUE, D ;
GASOL, JM ;
MARRASE, C .
MARINE ECOLOGY PROGRESS SERIES, 1994, 109 (2-3) :263-274
[78]   Measuring the grazing losses of picoplankton:: methodological improvements in the use of fluorescently labeled tracers combined with flow cytometry [J].
Vazquez-Dominguez, E ;
Peters, F ;
Gasol, JM ;
Vaqué, D .
AQUATIC MICROBIAL ECOLOGY, 1999, 20 (02) :119-128
[79]   Feeding of the heterotrophic freshwater dinoflagellate Peridiniopsis berolinense on cryptophytes: Analysis by flow cytometry and electronic particle counting [J].
Weisse, T ;
Kirchhoff, B .
AQUATIC MICROBIAL ECOLOGY, 1997, 12 (02) :153-164
[80]   TROPHIC INTERACTIONS AMONG HETEROTROPHIC MICROPLANKTON, NANOPLANKTON, AND BACTERIA IN LAKE CONSTANCE [J].
WEISSE, T .
HYDROBIOLOGIA, 1990, 191 :111-122