$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

몬순지역 대형댐(소양호)에서 동물플랑크톤 군집의 계절천이
Seasonal Succession of Zooplankton Community in a Large Reservoir of Summer Monsoon Region (Lake Soyang) 원문보기

생태와 환경 = Korean journal of ecology and environment, v.52 no.1, 2019년, pp.40 - 49  

김문숙 (강원대학교 자연과학대학 환경과학과) ,  김범철 (강원대학교 자연과학대학 환경과학과) ,  전만식 (강원연구원)

초록
AI-Helper 아이콘AI-Helper

본 연구는 몬순지역의 대형호인 소양호를 대상으로 동물플랑크톤의 종 조성과 생물량을 조사하였으며, 군집의 계절천이를 알아보고자 하였다. 또한, PEG 모델과 몬순지역에서 다른 호수와의 동물플랑크톤 계절천이를 비교하여 고찰하였다. 조사기간 동안 소양호 유역의 강수량은 $705{\sim}1,779mm\;yr^{-1}$의 큰 변동을 보였으며, 70% 이상이 6~9월에 집중되는 것으로 나타났다. 소양호의 수질은 연도별 변화보다 계절적 변화가 뚜렷하게 나타났으며, 몬순기후로 인한 여름철 홍수기 탁수유입이 가장 중요한 환경요인으로 작용하였다. 소양호에서 동물플랑크톤 종 조성의 계절천이는 연도별로 차이는 있지만, 매년 두 시기에 거쳐 뚜렷한 경향을 보였다. 봄 시기에는 소형 동물플랑크톤이 우점하였으며, 여름과 가을 시기에는 크기가 큰 지각류와 요각류가 우점하였다. 동물플랑크톤의 생물량은 집중강우 이후 9월에 최대를 보였으며, Chl. a 농도와 유사한 계절변동을 보였다(r=0.45). 소양호에서 동물플랑크톤의 생물량 증가는 강우 시 유입된 영양염과 유기물에 의한 미생물, 식물플랑크톤 등 먹이유용성 증가에 따른 microbial loop와 bottom-up 효과로 판단된다. 결과적으로, 몬순지역의 대형호인 소양호 동물플랑크톤은 종별 계절천이는 PEG 모델을 따랐지만, 생물량의 계절천이는 온대호수뿐만 아니라 몬순지역의 호수와도 차이를 보였다. 이는 유역에서 유입된 다량의 유기물 등과 함께 소양호의 수심, 체류시간 등 수리학적 특성에 따른 영향으로 판단된다.

Abstract AI-Helper 아이콘AI-Helper

Seasonal succession of zooplankton community and species composition was studied from 2003 to 2014 in a deep reservoir, Lake Soyang, in monsoon climate region, Korea. Annual precipitation was concentrated more than 70% between June and September and it showed remarkably that seasonal variation in wa...

주제어

참고문헌 (65)

  1. Agbeti, M.D., J.C. Kingston, J.P. Smol and C. Watters. 1997. Comparison of phytoplankton succession in two lakes of different mixing regimes. Archiv fur Hydrobiologie 140(1): 37-69. 

  2. Ahn, T.S., S.I. Choi, M.S. Byeon and H.W. Park. 1998. Temporal and Spacial Changes of Bacterial Numbers and their Cell Volume in Lake Soyang. Korean Journal of Limnology 31(3): 186-190. 

  3. An, K.G. 2001. Hydrological significance on inter-annual variability of cations, anions, and conductivity in a large reservoir ecosystem. Korean Journal of Limnology 34(1): 1-8. 

  4. An, K.G. and D.S. Kim. 2003. Response of lake water quality to nutrient inputs from various streams and in-lake fish farms. Water, Air, and Soil Pollution 149(1-4): 27-49. 

  5. Anderssen, A. and D.O. Hessen. 1991. Carbon, nitrogen, and phosphorus contents of freshwater zooplankton. Limnology and Oceanography 36: 807-814. 

  6. Anneville, O., J.C. Molinero, S. Souissi, G. Balvay and D. Gerdeaux. 2007. Long-term changes in the copepod community of Lake Geneva. Journal of Plankton Research 29: 49-59. 

  7. Arndt, H. 1993. Rotifers as predators on components of the microbial web (bacteria, heterotrophic flagellates, ciliates) - a review. Hydrobiologia 255(256): 231-246. 

  8. Bais, V.S. and W.L. Agrawal. 1993. Seasonal Variation of Nutrient content in Hydrilla verticollata. Journal of Freshwater Biology 3: 259-265. 

  9. Beisner, B.E. and P.R. Peres-Neto. 2009. Seasonal trophic dynamics affect zooplankton community variability. Freshwater Biology 54: 2351-2363. 

  10. Beyst, B., D. Buysse, A. Dewicke and J. Mees. 2001. Surf zone hyperbenthos of Belgian sandy beaches: seasonal patterns. Estuarine. Coastal and Shelf Science 53: 877-895. 

  11. Carpenter, S.R. and J.R. Kitchell. 1993. Cascading trophic interactions and lake productivity. BioScience 35: 634-639. 

  12. Christou, E.D. 1998. Interannual variability of copepods in a Mediterranean coastal area (Saronikos Gulf, Aegean Sea). Journal of Marine Systems 15: 523-532. 

  13. Choi, K., B. Kim and U. Lee, 2001. Characteristics of Dissolved Organic Carbon in Three Layers of a Deep Reservoir, Lake Soyang, Korea. lnternational Review of Hydrobiology 86(1): 63-76. 

  14. Choi, J.Y., K.S. Jeong, G.H. La, H.W. Kim, K.H. Chang and G.J. Joo. 2011. Inter-annual variability of a zooplankton community: the importance of summer concentrated rainfall in a regulated river ecosystem. Journal of Ecology and Field Biology 34(1): 49-58. 

  15. Choi, J.Y., S.K. Kim, G.H. La, K.S. Jeong, H.W. Kim, T.K. Kim and G.J. Joo. 2012. Microcrustacean Community Dynamics in Upo Wetlands: Impact of Rainfall and Physiochemical Factor on Microcrustacean Community. Journal of Korea Limnology 45(3): 340-346. 

  16. Culver, D.A., M.M. Boucherle, D.J. Bean and J.W. Flethcer. 1985. Biomass of freshwater crustacean zooplankton from Length-Weight regressions. Canadian Journal of Fisheries and Aquatic Sciences 42: 1380-1390. 

  17. Damotharan, P., N.V. Perumal and M. Arumugam. 2010. Seasonal variation of physicochemical characteristics in point Callimore Coastal waters (South East Coast of India). Middle-East Journal of Scientific Research 6(4): 333-339. 

  18. Dejen, E., J. Vijverberg, L.A.J. Nagelkerke and F.A. Sibbing. 2004. Temporal and spatial distribution of microcrustacean zooplankton in relation to turbidity and other environmental factors in a large tropical lake (L. Tana, Ethiopia). Hydrobiologia 513: 39-49. 

  19. Dumont, H.J., I. Van de Velde and S. Dumont. 1975. The dry weight estimate of biomass in a selection of Cladocera, Copepoda and Rotifera from the plankton, Periphyton and Benthos of Continental Waters. Oecologia (Berl.) 19: 75-97. 

  20. Eum, J.S. 2015. Runoff Characteristics of Non-point Source Pollution from Agricultural Watershed and Water Quality Simulations with Crop Change. Doctoral Dissertation of Kangwon National University. 

  21. Foissner, W. and H. Berger. 1996. A user-friendly guide to the ciliates (Protozoa, Ciliophora) commonly used by hydrobiologists as bioindicators in rivers, lakes, and waste water, with notes on their ecology. Freshwater Biology 35(2): 375-482. 

  22. Garcia, C.E., S. Nandini and S.S. Sarma. 2009. Seasonal dynamics of zooplankton in lake huetzalin, Xochimilco (Mexico City, Mexico). Limnologica 39: 283-291. 

  23. Hall, D.J. and S.T. Threlkeld. 1976. The size-efficiency hypothesis and the size structure of zooplankton communities. Annual Review of Ecology and Systematics 7: 177-208. 

  24. Heo, W.M., B.C. Kim, Y.N. Kim and K.S. Choi. 1998. Storm runoff of phosphorus from nonpoint sources into Lake Soyang and transportation of turbid watermass within the lake. Journal of Korea Limnology 31(1): 1-8. 

  25. Heo, W.M., B.C. Kim, T.S. Ahn and K.J. Lee. 1992. Phosphorus loadings from watershed and fish farms into Lake Soyang and the phosphorus budget. Journal of Korea Limnology 25(4): 207-214. 

  26. Hidalgo, P., R. Escribano, O. Vergara, E. Jorquera, K. Donoso and P. Mendoza. 2010. Patterns of copepod diversity in the Chilean coastal upwelling system. Deep Sea Research Part II: Topical Studies in Oceanography 57(24): 2089-2097. 

  27. Jeong, H.G., D.H. Hwang, H.J. Lee, J.K. Seoa, Y.S. Yoon and J.K. Lee. 2009. Communities and Vertical Distribution of the Zooplankton with Different Habitats In Artificial Lake. Collected papers of Korean Society of Water and Wastewater.Korean Society on Water Quality (Autumn scientific meeting). 

  28. Joshi, P.S. 2011. Studies on zooplankton of Rajura Lake of Buldhana district, Maharashtra India. Science Research Reporter 1(3): 132-137. 

  29. Jun, M.S. 2007. A Device of Reducing Muddy Water in the Watershed of Soyang Dam. Research Institute for Gangwon (07-18). 

  30. Jung, S.M. 2012. Characteristics of Nonpoint Source Pollution in the Han River and Effects of turbid water on Aquatic. Doctoral Dissertation of Kangwon National University. 

  31. Jung, S.M., M.S. Shin, J.K. Kim, J.S. Eum, Y.K. Lee, J.Y. Lee, Y.S. Choi, K.G. You, J. Owen and B.C. Kim. 2016. The effect of asian summer monsoons on algal blooms in reservoirs. Inland Waters 6(3): 406-413. 

  32. Kawabata, K. and J. Urabe. 1998. Length-weight relationships of eight freshwater planktonic crustacean species in Japan. Freshwater Biology 39: 199-205. 

  33. Kim, B.C. and S.M. Jung. 2007. Turbid Storm Runoffs in Lake Soyang and Their Environmental Effect. Journal of Korea Society of Environmental Engineers 29(11): 1185-1190. 

  34. Kim, B.C., J.O. Kim, M.S. Jun and S.J. Hwang. 1999. Seasonal Dynamics of Phytoplankton and Zooplankton community in Lake Soyang. Journal of Korea Limnology 32(2): 127-134. 

  35. Kim, B.C., K.S. Cho and T.S. Ahn. 1985. A Horizontal variation of primary productivity and environmental factors in Lake Soyang. Korean Journal of Limnology 18: 1-10. 

  36. Kim, H.S., D.S. Kong and S.J. Hwang. 2005. Characteristic community Dynamics of Phyto- and Zooplankton in a Shallow Eutrophic Reservoir. Journal of Korea Limnology 38(1): 18-29. 

  37. Kim, H.W., G.H. La, K.S. Jeong, J.H. Park, Y.J. Huh, S.D. Kim, J.E. Na, M.H. Jung and H.Y. Lee. 2010a. Assessing the Plankton Dynamics in Lakes and Reservoirs Ecosystem in the Southwestern Parts of Korea. Journal of Korean Society of Environmental Biology 28(2): 86-94. 

  38. Kim, H.W., J.Y. Choi, G.H. La, K.S. Jeong and G.J. Joo. 2010b. Relationship between Rainfall and Zooplankton Community Dynamics in a Riverine Wetland Ecosystem (Upo). Journal of Korea Limnology 43(1): 129-135. 

  39. Kim, M.S., B.C. Kim, M.S. Jun. 2018. Long Term Variations and Environment Factors of Zooplankton Community in Lake Soyang. Journal of Korean Society of Environmental Biology 51(1): 29-39. 

  40. Kim, Y.H. and B.C. Kim. 2006. Application of a 2-Dimensional Water Quality Model (CE-QUAL-W2) to the Turbidity Interflow in a Deep Reservoir (Lake Soyang, Korea). Lake and Reservoir Management 22(3): 213-222. 

  41. La, G.H., H.Y. Lee and H.W. Kim. 2008. The Vertical Changes of Zooplankton Dynamics and Community Filtration Rate in the Artificial Lake (Okjeong Lake). Journal of Korean Society of Environmental Biology 26(4): 392-401. 

  42. Lee, H.W., K.G. An and S.S. Park. 2002. Long-Term Annual Trend Analyses of Epilimnetic Water Qualitites and Their Longitudinal Heterogeneities in the Soyang Lake. Collected papers of Korean Society of Water and Wastewater .Korean Society on Water Quality (Autumn scientific meeting). 

  43. Li, J., F. Chen, Z. Liu, X. Zhao, K. Yang, W. Lu and K. Cui 2016. Bottom-up versus top-down effects on ciliate community composition in four eutrophic lakes (China). European Journal of Protistology 53: 20-30. 

  44. Licandro, P. and F. Ibanez. 1995. Changes of zooplankton communities in the Gulf of Tigullio (Ligurian Sea, Western Mediterranean) from 1985 to 1995. Influence of hydroclimatic factors. Journal of Plankton Research 22: 2225-2253. 

  45. Lorenzen, C.J. 1967. Determination of chlorophyll and pheopigments; spectrophoto metric equation. Limnology and Oceanography 12: 343-346. 

  46. Mizuno, T. 1991. An Illustrated Guide to Freshwater Zooplankton in Japan. TOUKAI University Publications. 

  47. Ooms-Wilms, A.L. 1997. Are bacteria and important food source for rotifers in eutrophic lakes? Journal of Plankton Research 19: 1125-1141. 

  48. Pace, M.L. and J.D. Orcutt. 1981. The relative importance of protozoans, rotifers, and crustaceans in a freshwater zooplankton community. Limnology and Oceanography 26(5): 822-830. 

  49. Park, H.K., M.S. Byeon, Y.N. Shin and D.I. Jung. 2009. Soruces and spatial and temporal characteristics of organic carbon in two large reservoirs with contrasting hydrologic characteristics. Water Resources Research 45(11): W11418. 

  50. Park, H.K., O.Y. Kwon and D.I. Jung. 2011. Characteristics of Allochthonous Organic Matter in Large Dam Reservoir, Lake Soyang. Journal of Korean Society on Water Quality 27(1): 88-97. 

  51. Ruttner-Kolisko, A. 1977. Suggestions for biomass calculation of plankton rotifers. Archiv fur Hydrobiologie Beiheft Ergebnisse der Limnologie 8: 71-76. 

  52. Sahu, B.M., S.K. Baliarsingh, S. Srichandan and K.C. Sahu. 2013. Seasonal variation of zooplankton abundance and composition in Gopalpur Creek: a tropical tidal backwater, east coast of India. Journal of the Marine Biological Association of India 55(1): 59-64. 

  53. Salve, B. and C. Hiware. 2010. zooplankton diversity of Wan reservoir, Nagapur (MS) India. Journal of Trends Research Science and Technology 2(1): 39-48. 

  54. Sellami, I., W. Guermazi, A. Hamza, L. Aleya and H. Ayadi. 2010. Seasonal dynamics of zooplankton community in four Mediterranean reservoirs in humid area (BeniMtir: north of Tunisia) and semi arid area (Lakhmes, Nabhana and Sidi Saad:center of Tunisia). Journal of Thermal Biology 35: 392-400. 

  55. Sommer, U., Z.M. Gliwicz, W. Lampert and A. Duncan. 1986. The PEG-model of seasonal succession of planktonic events in fresh waters. Archiv fur Hydrobiologie 106: 433-471. 

  56. Song, Y.H., W.C. Lee and I.S. Kwak. 2003. Study on Response-Species of Zooplankton to the Seasonal Changes of Precipitation and Temperature. Journal of Korea Limnology 36(1): 9-20. 

  57. Telesh, I.V., M. Rahkola and M. Viljanen. 1998. Carbon content of some freshwater rotifers. Hydrobiologia 387/388: 355-360. 

  58. Uhm, S.H. and S.J. Hwang. 2006. Grazing Relationship between Phytoplankton and Zooplankton in Lake Paldang Ecosystem. Journal of Korea Limnology 39(3): 390-401. 

  59. Vanderploeg, H.A., S.A Pothoven, G.L. Fahnenstiel, J.F. Cavaletto, J.R. Liebig, C.A. Stow, T.F. Nalepa, C.P. Madenjian and D.B. Bunnell. 2012. Seasonal zooplankton dynamics inLake Michigan: disentangling impacts of resource limitation, ecosystem engineering, and predation during a critical ecosystem transition. Journal of Great Lakes Research 38: 336-352. 

  60. Van Egeren, S.J., S.I. Doson, B. Torke and J.T. Maxted. 2011. The relative significance of environmental and anthropogenic factors affecting zooplankton community structure in Southeast Wisconsin Till Plain lakes. Hydorbiologia 668: 137-146. 

  61. Yoon, J.S., H.G. Jeong, Y.H. Kwon, C.K. Shin and D.J. Hwng. 2008. Seasonal Changes of Zooplankton Distribution with Environmental Factors in Lake Jinyang. Journal of Environmental and Sanitary Engineering 23(4): 45-54. 

  62. Yoshida, T., M. Kagami, T. Bahadur Gurung and J. Urabe. 2001. Seasonal Succession of zooplankton in the north basin of Lake Biwa. Aquatic Ecology 35: 19-29. 

  63. You, K.A., H.K. Park, M.S. Byeon, J.M. Choi, S.H. Yun and D.S. Kong. 2007. Changes of Zooplankton Community in an Artificial Vegetation Island of Lake Paldang. Journal of Korea Socity on Water Quality 23(3): 339-347. 

  64. You, K.A., H.K. Park, D.S. Kong and S.J. Hwang. 2010. Structure and Succession of Zooplankton Community in Several Artificial Lakes in the Han River System. Journal of Korean Society on Water Quality 26(5): 850-859. 

  65. You, K.A., M.S. Byeon and S.J. Hwang. 2012. Effects of Hydraulic-hydrological Changes by Monsoon Climate on the Zooplankton Community in Lake Paldang, Korea. Journal of Korea Limnology 45(3): 278-288. 

저자의 다른 논문 :

관련 콘텐츠

오픈액세스(OA) 유형

GOLD

오픈액세스 학술지에 출판된 논문

섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로