References
- 김동주, 홍선희, 안태석. 1999. 소양호에서 세균군집구조의 계절적∙수직적 변화. 한국미생물학회지 35: 242-247
- 김동주, 홍선희, 최승익, 안태석. 2000. 소양호 세균군집 구조와 그 구조에 영향을 주는 환경요인. 한국미생물학회지 36: 136-141
- 김명운, 김민호, 조장천, 김상종. 1995. Cyanobacteria의 증식 에 따른 대청호 생태계내의 생물군집 변화. 한국육수학회지 28: 1-9
- 김원진, 이혜주. 1998. 낙동강 하구의 환경요인과 미생물 분포. 한국육수학회지 31: 25-31
- 신재기, 조경제, 오인혜. 1999. 대청호에서 수환경 요인과 식물플랑크톤의 변동. 한국환경생물학회지 17: 529-541
- 신재기, 박경미, 황순진, 조경제. 2001. 경안천과 팔당호에서 총 세균수의 분포와 동태, 한국육수학회지 34: 119-125
- 안태석, 이동훈, 김범철, 조규송. 1988. 한강상류 인공호에서의 미생물 분포와 활성도에 관하여. 한국육수학회지. 21: 143-150.
- 최승익, 변명섭, 안택석. 1997. 소양호에서 총 세균수의 분포. 한국육수학회지 30: 377-383
- 홍선희, 안태석. 1998. Fluorescent in situ Hybridization방법으로 분석한 소양호 세균 군집 구조의 계절적 변화. 한국미생물학회지 34: 169-174
- 환경부. 1995. 수질오염공정시험법. 행정간행물
- Ahn, T., S. Hong, D. Kim, J. Suck and V.V. Drucker. 1999. The bacterial community of southern lake Baikal in water. J. Microbiol. 37: 10-13
- Alfreidner, A., J. Pernthhaler, R. Amman, B. Sattler, F.O. Glockner, A. Wille, and R. Psenner. 1996. Community analysis of the bacterial assemblages in the wintercover and pelagic Layers of a high mountain lake by in situ hybridization. Appl. Environ. Microbiol. 62: 2138-2144
- APHA-AWWA-WPCF. 1989. Standard Methods For The Examination of Water And Wastewater. 17th ed. American Pulbic Health Association, Washington, DC
- Bell, R.T. and J. Kuparinen. 1984. Assessing phytoplankton and bacterioplankton production during early spring in Lake Erken, Sweden. Appl. Environ. Microbiol.62: 35-45
- Furman, J., J.W. Ammerman, and F. Azam. 1980. Bacterioplankton in the costal euphotic zone: distribution, activity, and possible relation with phytoplankton.Mar. Biol. 60: 201-207
- Glockner, F.L., B.M. Fuchs and R.A. Mann. 1999. Bacterioplankton compositions of lakes and oceans : a first comparison based on fluorescence in situ hybridization. Appl. Environ. Microbiol. 65: 3721-3726
- Gude, H., B. Haibel, and H. Muller. 1985. Development of bacterial planktonic populations in a water column of Lake Constance (Bodensee-Obersee). Arch. Hydriobiol. 105: 59-77
- Hoefle, M.G., H. Haas, and K. Dominik. 1999. Seasonal dynamics of bacterioplankton community structure in a eutrophic lake as determined by 5s rRNA analysis. Appl. Environ. Microbiol. 65: 3164-3174
- Krogh, A. and E. Lange, 1932. Quantitatives untersuchungen uber plankton, kolloide und geloste organische and anorganische substanzen in dem furesee. Int. Rev. Gesamten Hydrobiol. 26: 20-53
- Laanbroek, H.J., J.C. Verplanket, P.R.M. de Visscher, and T.R. de Vuyst. 1985. Distribution of phyto-and bacterioplankton growth and biomass parameters, dissolved inorganic nutrients and dissolved free amino acids during a spring bloom in the Oosterschelde basin, The Netherlands, Mar. Ecol. Prog. Ser. 25: 1-11
- Lancelot, C and G. Billen. 1984. Activity of heterotrophic bacteria and its coupling to primary production during a spring phytoplankton bloom in the southern bight of the North Sea. Limnol. Oceanogr. 29: 721-730
- Lovell, C.R. and A. Konopka. 1985. Primary and bacterial production in two dimictic Indiana lakes. Appl. Environ. Microbiol. 49: 485-491
- Monster, U. and R.J. Chrost, 1990. Origin, composition and microbial utilization of dissolved organic matter. 00. 8- 46. In Overbeck, J. and R.J. Chrost (eds). Aquatic microbial ecology; biochemical and molecular approaches.Springer Verla, New York
- Mun, J., S. Lee, W. Hwang, and I. Oh. 2001. Seasonal Fluctuation of chlorophyll a concentration in the size fractionation of phytoplankton in Daechung reservoir.Korean. J. Limnol. 34: 277-284
- Pedros-Alio, C. and T.D. Brock. 1982. Assessing biomass and production of bacteria in eutrophic Lake Mendota, Wisconsin. Appl. Environ. Microbiol. 44: 203-218
- Porter, K.G. and Y.S. Feig. 1980. The use of DAPI for identifying and counting aquatic microflora. Limnol. Oceanogr. 25: 943-948
- Reynold, C.S. 1973a. The Phytoplankton of crose mere, shropshire. Br. Phycol. J. 8: 153-162
- Reynold, C.S. 1973b. The seasonal periodicity of planktonic diatoms in a shallow eutrophic lake. Freshwater Biol. 3: 89-110
- Reynold, C.S. 1984a. Phytoplankton periodicity interactions of form, function and environmental variability. Freshwater. Biol. 14: 111-142
- Reynold, C.S. 1984b. The ecology of freshwater phytoplankton. Cambridge Univ. Press, New York, pp.384
- Rieman, B. 1983. Biomass and production of phyto- and bacterioplankton in eutrophic Lake Tystrup, Denmark. Freshwater Biol. 13: 389-398
- Rieman, B.M. Sondergaard, H.H. Schierup, S. Bosselman, G. Christensen, J. Hanse, and B. Nielsen. 1982. Carbon metabolism during a spring diatom bloom in the eutrophic Lake Mosso. Int. Rev. Gesamten. Hydrobiol. 67: 145-185
- Saunders, G.W. 1972. Summary of the general conclusions of the symposium on detritus and its role in aquatic systems, Pallanza, Italy. Mem. Ist. Ital. Idrobiol., 29 (suppl.): 533-540
- Simon, M. and M.M. Tilzer. 1987. Bacterial response to seasonal changes in primary production and phytoplankton and biomass in Lake Constance. J. plankton Research. 9: 535-552
- Tezuka, Y. 1984. Seasonal variation of dominant phytoplankton, chlorophyll a and nutrient levelsiIn the pelagic regions of lake Biwa. Jap. J. Limnol. 45: 26-37
- Trebesius, K., R.A. Mann, W. Ludwig, K.M. hlegger, and K.H. Schleifer. 1994. Identification of whole fixed bacterial cells with nonradioactive rRNA targeted transcript probes. Appl. Environ. Microbiol. 60: 3228-3235