Free Access
Issue |
Ann. Limnol. - Int. J. Lim.
Volume 57, 2021
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Article Number | 20 | |
Number of page(s) | 11 | |
DOI | https://doi.org/10.1051/limn/2021018 | |
Published online | 12 October 2021 |
- Adler M, Gervais F, Siedel U. 2000. Phytoplankton species composition in the chemocline of mesotrophic lakes. Arch Hydrobiol 55: 513–530. [Google Scholar]
- Ahmed A, Wanganeo A. 2015. Phytoplankton succession in a tropical freshwater lake, Bhoj Wetland (Bhopal, India): spatial and temporal perspective. Environ Monit Assess 187: 1–12. [CrossRef] [PubMed] [Google Scholar]
- Becker V, Huszar VLM, Crossetti LO. 2009. Responses of phytoplankton functional groups to the mixing regime in a deep subtropical reservoir. Hydrobiologia 628: 137–151. [CrossRef] [Google Scholar]
- Behrenfeld MJ. 2010. Abandoning Sverdrup's Critical Depth Hypothesis on phytoplankton blooms. Ecology 91: 977–989. [PubMed] [Google Scholar]
- Berger WH, Parker FL. 1970. Diversity of planktonic foraminifera in deep-sea sediments. Science 168: 1345–1347. [CrossRef] [PubMed] [Google Scholar]
- Camacho A, Vicente E, Miracle MR. 2000. Ecology of a deep-living Oscillatoria (Planktothrix) population in the sulphide-rich waters of a Spanish karstic lake. Arch fur Hydrobiol 148: 333–355. [CrossRef] [Google Scholar]
- Coesel PFM. 1983. The significance of desmids as indicators of the trophic status of freshwaters. Schweizerische Zeitschrift fur Hydrol 45: 388–393. [Google Scholar]
- Coesel PFM. 2001. A method for quantifying conservation value in lentic freshwater habitats using desmids as indicator organisms. Biodivers Conserv 10: 177–187. [CrossRef] [Google Scholar]
- Davies OA, Abowei JF, Otene BB. 2009. Seasonal abundance and distribution of plankton of minichinda stream, Niger Delta, Nigeria. Am J Sci Res 2: 20–30. [Google Scholar]
- Dellamano-Oliveira MJ, Senna PA, Taniguchi GM. 2003. Limnological characteristics and seasonal changes in density and diversity of the phytoplanktonic community at the Caçó pond, Maranhão State, Brazil. Braz Arch Biol Technol 46: 641–651. [CrossRef] [Google Scholar]
- Doyon P, Klein B, Ingram RG, Legendre L, Tremblay JE, Therriault JC. 2000. Influence of wind mixing and upper-layer stratification on phytoplankton biomass in the Gulf of St. Lawrence. Deep. Res. Part II Top. Stud. Oceanography 47: 415–433. [Google Scholar]
- Gerrath JF. 1993. The biology of desmids: a decade of progress. Progr Phycol Res 9: 79–192. [Google Scholar]
- Gervais F. 1998. Ecology of cryptophytes coexisting near a freshwater chemocline. Freshw Biol 39: 61–78. [CrossRef] [Google Scholar]
- Gervais F. 2003. Small-scale vertical distribution of phytoplankton, nutrients and sulphide below the oxycline of a mesotrophic lake. J Plankton Res 25: 273–278. [CrossRef] [Google Scholar]
- Grasshoff P. 1983. Methods of seawater analysis. Verlag Chemie FRG 419: 61–72. [Google Scholar]
- Hansson LA, Annadotter H, Bergman E, et al. 1998. Minireview: Biomanipulation as an application of food-chain theory: constraints, synthesis, and recommendations for temperate lakes. Ecosystems 1: 558–574. [CrossRef] [Google Scholar]
- Huang T, Li X, Rijnaarts H, et al. 2014. Effects of storm runoff on the thermal regime and water quality of a deep, stratified reservoir in a temperate monsoon zone, in Northwest China. Sci Total Environ 485–486: 820–827. [PubMed] [Google Scholar]
- Huszar VLM. 1996. Planktonic algae, other than desmids of three Amazonian systems (Lake Batata, Lake Mussara and Trombetas River), Para, Brazil. Amazoniana 14: 37–73. [Google Scholar]
- Hutchinson EG. 1967. Introduction to lake biology and the limnoplankton. A Treatise Limnol 1115p. [Google Scholar]
- Isabwe A, Yang JR, Wang Y, Liu L, Chen H, Yang J. 2018. Community assembly processes underlying phytoplankton and bacterioplankton across a hydrologic change in a human-impacted river. Sci Total Environ 630: 658–667. [PubMed] [Google Scholar]
- Islam MN, Kitazawa D, Park HD. 2012. Numerical modeling on toxin produced by predominant species of cyanobacteria within the ecosystem of Lake Kasumigaura, Japan. Proc Environ Sci 13: 166–193. [CrossRef] [Google Scholar]
- Knap AH, Michaels A, Close AR, Ducklow H, Dickson AG. 1996. Protocols for the joint global ocean flux study (JGOFS) core measurements. JGOFS, Reprint of the IOC Manuals and Guides No. 29, UNESCO 1994, 19. [Google Scholar]
- Kullenberg GEB. 1978. Vertical Processes and the Vertical-Horizontal Coupling, In: Spatial Pattern in Plankton Communities, Springer US, 43–71 p. [Google Scholar]
- Kurian S, Roy R, Repeta DJ, et al. 2012. Seasonal occurrence of anoxygenic photosynthesis in Tillari and Selaulim reservoirs, Western India. Biogeosciences 9: 2485–2495. [CrossRef] [Google Scholar]
- Lass S. 2000. How do migrating daphnids cope with fish predation risk in the epilimnion under anoxic conditions in the hypolimnion? J Plankton Res 22: 1411–1418. [CrossRef] [Google Scholar]
- Lawson R, Anderson MA. 2007. Stratification and mixing in Lake Elsinore, California: An assessment of axial flow pumps for improving water quality in a shallow eutrophic lake. Water Res 41: 4457–4467. [PubMed] [Google Scholar]
- Leland HV. 2003. The influence of water depth and flow regime on phytoplankton biomass and community structure in a shallow, lowland river. Hydrobiologia 506–509: 247–255. [CrossRef] [Google Scholar]
- Lewis WM. 1973. The thermal regime of Lake Lanao (Philippines) and its theoretical implications for tropical lakes1. Limnol Oceanogr 18: 200–217. [CrossRef] [Google Scholar]
- Lope M, Chan K-S, Ciannelli L, Reid PC, Stige LC, Stenseth NC. 2009. Effects of environmental conditions on the seasonal distribution of phytoplankton biomass in the North Sea. Limnol Oceanogr 54: 512–524. [CrossRef] [Google Scholar]
- Ma WX, Huang TL, Li X, Zhang HH, Ju T. 2015. Impact of short-term climate variation and hydrology change on thermal structure and water quality of a canyon-shaped, stratified reservoir. Environ Sci Pollut Res 22: 18372–18380. [CrossRef] [Google Scholar]
- Margalef R. 1983. Limnologia. Ediciones Omega, S.A., Barcelona. 1010 p. Limnol Oceanogr 29: 1349–1349. [Google Scholar]
- Marinho MM, Moraes Huszar VL De. 2002. Nutrient availability and physical conditions as controlling factors of phytoplankton composition and biomass in a tropical reservoir (Southeastern Brazil). Arch fur Hydrobiol 153: 443–468. [CrossRef] [Google Scholar]
- Marshall CT, Peters RH. 1989. General patterns in the seasonal development of chlorophyll a for temperate lakes. Limnol Oceanogr 34: 856–867. [CrossRef] [Google Scholar]
- Marshall HG. 1965. the Annual Distribution and Stratification of Phytoplankton at Aurora Lake, Portage. Ohio J Sci 65: 190–202. [Google Scholar]
- Michael RG, Sharma BK. 1988. Fauna of India and adjacent countries. Indian Cladocera (Crustacean: Branchiopoda: Cladocera). India: Zoological Survey of India. [Google Scholar]
- Naqvi SWA, Lam P, Narvenkar G, et al. 2018. Methane stimulates massive nitrogen loss from freshwater reservoirs in India. Nature Communications 9: 1–10. [CrossRef] [PubMed] [Google Scholar]
- Narvenkar G, Naqvi SWA, Kurian S, et al. 2013. Dissolved methane in Indian freshwater reservoirs. Environ Monit Assess 185: 6989–6999. [PubMed] [Google Scholar]
- Naselli-Flores L, Barone R, Chorus I, Kurmayer R. 2007. Toxic cyanobacterial blooms in reservoirs under a semiarid Mediterranean climate: the magnification of a problem. Environ Toxicol 22: 399–404. [PubMed] [Google Scholar]
- Paerl HW. 1988. Nuisance phytoplankton blooms in coastal, estuarine, and inland waters. Limnol Oceanogr 33: 823–843. [Google Scholar]
- Pal DP, Kundu BC, Sudarlingam PVS, Venkataraman GS. 1962. Charophyta. New Delhi: Indian council of agricultural research. [Google Scholar]
- Pedros-Alio C, Massana R, Latasa M, Garci-Cantizano J, Gasol JM. 1995. Predation by ciliates on a metalimnetic Cryptomonas population: feeding rates, impact and effects of vertical migration. J Plankton Res 17: 2131–2154. [CrossRef] [Google Scholar]
- Peng S, Qin X, Shi H, Zhou R, Dai M, Ding D. 2012. Distribution and controlling factors of phytoplankton assemblages in a semi-enclosed bay during spring and summer. Mar Pollut Bull 64: 941–948. [PubMed] [Google Scholar]
- Presscot GW. 1962. Algae of western great lakes area. USA: W.M.C. Brown Company. [Google Scholar]
- Ramirez RJJ, Diaz CA. 1994. Caracterización limnologica yestrutura de la comunidad fitoplanctonica en la Laguna Del Parque Norte, Medellin, Colombia. Hoehnea 21: 7–28. [Google Scholar]
- Randhawa MS. 1959. Zygnemaceae. In Zygnemaceae. New York: Indian Council of Agricultural Research, New Delhi. [Google Scholar]
- Reynolds CS. 1992. Dynamics, selection and composition of phytoplankton in relation to vertical structure in lakes. Arch for Hydrobiol 35: 13–31. [Google Scholar]
- Robson BJ, Hamilton DP. 2003. Summer flow event induces a cyanobacterial bloom in a seasonal Western Australian estuary. Mar Freshw Res 54: 139–151. [CrossRef] [Google Scholar]
- Rothhaupt KO. 2000. Plankton population dynamics: food web interactions and abiotic constraints. Freshw Biol 45: 105–109. [CrossRef] [Google Scholar]
- Shannon CE, Wiener W. 1949. The Mathematical Theory of Communication. Urbana: University of Illinois. [Google Scholar]
- Shenoy DM, Kurian S, Shirodkar G, Uskaikar H, Gauns M, Naqvi SW. 2021. Impact of physical processes on oxygen loss and production of hydrogen sulphide and methane in a tropical freshwater reservoir. Environ Sci Pollut Res 1–13. [Google Scholar]
- Shi X, Li S, Zhang M, Liu C, Wu Q. 2020. Temperature mainly determines the temporal succession of the photosynthetic picoeukaryote community in Lake Chaohu, a highly eutrophic shallow lake. Sci Total Environ 702: 134803. [PubMed] [Google Scholar]
- Silva CA Da Train S, Rodrigues LC. 2005. Phytoplankton assemblages in a Brazilian subtropical cascading reservoir system. Hydrobiologia 537: 99–109. [CrossRef] [Google Scholar]
- Smith GM. 1924. Ecology of the plankton algae in the Palisades Interstate Park, including the relation of control methods to fish culture. Roosevelt Wildlife Bull 2: 95–195. [Google Scholar]
- Soares MCS, Maria MI, Marinho MM, Azevedo SMFO, Branco CWC, Huszar VLM. 2009. Changes in species composition during annual cyanobacterial dominance in a tropical reservoir: physical factors, nutrients and grazing effects. Aquat Microb Ecol 57: 137–149. [CrossRef] [Google Scholar]
- Sommer U, Gliwicz Z, Lampert W, Duncan A. 1986. The PEG-model of seasonal succession of planktonic event in fresh waters. Arch Hydrobiol 106: 433–471. [Google Scholar]
- Tian C, Lu X, Pei H, Hu W, Xie J. 2013. Seasonal dynamics of phytoplankton and its relationship with the environmental factors in Dongping Lake, China. Environ Monit Assess 185: 2627–2645. [PubMed] [Google Scholar]
- Tucci A, Sant Anna CL. 2003. Cylindrospermopsis raciborskii (Woloszynska) Seenayya & Subba Raju (Cyanobacteria): variaçao semanal e relaçoes com fatores ambientais em um reservatorio eutrofico, Sao Paulo, SP, Brasil. Rev Bras Botanica 26. [Google Scholar]
- Tyler P, Vyverman W. 1996. The microbial parket-place − trade-offs at the chemocline of meromictic lakes. Progr Phycol Res 11: 325–370. [Google Scholar]
- Vanni MJ, Temte J. 1990. Seasonal patterns of grazing and nutrient limitation of phytoplankton in a eutrophic lake. Limnol Oceanogr 35: 697–709. [CrossRef] [Google Scholar]
- Wang S, Qian X, Han BP, Luo LC, Hamilton DP. 2012. Effects of local climate and hydrological conditions on the thermal regime of a reservoir at Tropic of Cancer, in southern China. Water Res 46: 2591–2604. [PubMed] [Google Scholar]
- Wanganeo A. 2010. Manasbal Lake Kashmir-phytoplankton photosynthesis, nutrient dynamics and trophic status. Utpal Pub. [Google Scholar]
- Ward B, Rees AP, Somerfield PJ, Joint I. 2011. Linking phytoplankton community composition to seasonal changes in f-ratio. ISME J 5: 1759–1770. [PubMed] [Google Scholar]
- Watson SB, McCauley E, Downing JA. 1997. Patterns in phytoplankton taxonomic composition across temperate lakes of differing nutrient status. Limnol Oceanogr 42: 487–495. [Google Scholar]
- Wichelen J V, Vanormelingen P, Codd GA, Vyverman W. 2016. The common bloom-forming cyanobacterium Microcystis is prone to a wide array of microbial antagonists. Harmful Algae 55: 97–111. [PubMed] [Google Scholar]
- Xiao LJ, Wang T, Hu R, et al. 2011. Succession of phytoplankton functional groups regulated by monsoonal hydrology in a large canyon-shaped reservoir. Water Res 45: 5099–5109. [CrossRef] [PubMed] [Google Scholar]
- Yang JR, Lv H, Isabwe A, et al. 2017. Disturbance-induced phytoplankton regime shifts and recovery of cyanobacteria dominance in two subtropical reservoirs. Water Res 120: 52–63. [PubMed] [Google Scholar]
- Yildiz S, Altindag A, Ergonul MB. 2007. Seasonal fluctuations in the zooplankton composition of a eutrophic lake: Lake Marmara (Manisa, Turkey). Turk J Zool 31: 121–126. [Google Scholar]
- Zhang H, Jia J, Chen S, et al. 2018. Dynamics of bacterial and fungal communities during the outbreak and decline of an algal bloom in a drinking water reservoir. Int J Environ Res Public Health 15: 361. [CrossRef] [Google Scholar]
- Zhang H, Zhou X, Wang L, Wang W, Xu J. 2018. Concentrations and potential health risks of strontium in drinking water from Xi'an, Northwest China. Ecotoxicol Environ Saf 164: 181–188. [PubMed] [Google Scholar]
- Zhu W, Wan L, Zhao L. 2010. Effect of nutrient level on phytoplankton community structure in different water bodies. J Environ Sci 22: 32–39. [CrossRef] [Google Scholar]
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