Journal of
Evolutionary Biology Research

  • Abbreviation: J. Evol. Biol. Res.
  • Language: English
  • ISSN: 2141-6583
  • DOI: 10.5897/JEBR
  • Start Year: 2009
  • Published Articles: 32

Short Communication

Taxonomic survey of crustacean zooplankton in Wular Lake of Kashmir Himalaya

Javaid Ahmad Shah*
  • Javaid Ahmad Shah*
  • Centre of Research for Development, University of Kashmir 190006, J&K, India.
  • Google Scholar
Ashok Kumar Pandit
  • Ashok Kumar Pandit
  • Centre of Research for Development, University of Kashmir 190006, J&K, India.
  • Google Scholar


  •  Received: 11 May 2013
  •  Accepted: 09 December 2013
  •  Published: 28 February 2014

References

Anneville O, Molinero JC, Souissi S, Balvay, G, Gerdeaux D (2007). Long-term changes in the copepod community of Lake Geneva. J. Plankton Res. 29:49-59.
Crossref
 
Attayde JL, Bozelli RL (1998). Assessing the indicator properties of zooplankton assemblages to disturbance gradients by canonical correspondence analysis. Can. J. Fish. Aquat. Sci. 55: 1789-1797.
Crossref
 
Battish SK (1992). Freshwater Zooplankton of India. Oxford and IBH Publishing Co., New Delhi.
 
Bays JS, Crisman TL(1983). Zooplankton and trophic state relationships in Florida lakes. Can. J. Fish. Aquat. Sci. 40:1813-1819.
Crossref
 
Burns CW, Galbraith LM (2007). Relating planktonic microbial food web structure in lentic freshwater ecosystems to water quality and land use. J. Plankton Res. 29: 127-139.
Crossref
 
Cardinale BJ, Brady VJ, Burton TM (1998). Changes in the abundance e diversity of coastal wetland fauna from the open water/macrophytes edge towards shore Wetlands Ecology and Management. 6:59-68.
Crossref
 
Cottenie K, De Meester L (2003). Connectivity and cladoceran species richness in a metacommunity of shallow lakes. Freshw. Biol. 48:823-832.
Crossref
 
Cottenie K, Nuytten N, Michels E, De Meester L (2001). Zooplankton community structure and environmental conditions in a set of interconnected ponds. Hydrobiologia 442:339-350.
Crossref
 
Crisman TL (1978). Interpretations of past environments from lacustrine animal remains. p. 69-101. In: Walter D (ed.), Biology and Quaternary Environments. Australian Academy of Sciences, Canberra,
 
Crisman TL, Beaver JR, Jones JK, Keller AE, Neugaard AG, Nilakantan V (1992). Historical Assessment of Cultural Eutrophication in Lake Weir, Florida. Department of Environmental Engineering Sciences, University of Florida, Gainesville and St. John's River Water Management District, Palatka, Florida. 442 pp.
 
Davies OA, Tawari CC, Abowei JFN (2008). Zooplankton of Elechi Creek, Niger Delta Nigeria. Environ. Ecol., 26(4c): 2441-2346.
 
Devi B, Ramanibai R (2012). Distribution and abundance of zooplankton in Muttukadu backwater, Chennai. J. Res. Biol. 1:035-041.
 
Dole-Olivier MJ, Glassi DMP, Marmonier P, Chatelliers CD (2000). The biology and ecology of lotic microcrustaceans. Freshw. Biol. 44:93-91.
Crossref
 
Edmondson WT (1992) Ward and Whiple Freshwater Biology. 2nd ed. Intern. Books and Periodicals Supply Service, New Delhi.
 
Fahd K, Serano L, Toja J (2000). Crustacean and rotifer composition of temporary ponds in the Do-ana National Park (SW Spain) during floods. Hydrobiologia 436:41-49.
Crossref
 
Frey DG (1980). On the plurality of Chydorus sphaericus (O. F. Müller) (Cladocera, Chydoridae) and designation of a neo type from Sjaelsø, Denmark. Hydrobiologia 69:83-123.
Crossref
 
Gannon JE, Stemberg RS (1978). Zoopankton (especially crustaceans and rotifers) as indicator of water quality. Trans. Am. Microsc. Soc. 97:16-35.
Crossref
 
Gulati RD, Vuik C, Siewertsen K, Postema G (1991). Clearance rates of Bosmina species in response to changes in trophy and food concentration. Verh. Int. Ver. Limnol. 24:745-750.
 
Haberman J (1998). Zooplankton of Lake Vortsjarv. Limnologica 28(1):49-65.
 
Huys R, Boxshall GA (1991). Copepoda Evolution. Guildford: Unwin Brothers Ltd. 486 p.
 
Jarnrnefelt H (1952). Plankton als Indikator der Trophiegruppen der Seen. Ann. Acad. Sci. Fennicae, A, 4:1-29.
 
Kaul V, Pandit AK (1982). Biotic factor and food chain structure in some typical wetlands of Kashmir. Pollut. Res. 1:49-54.
 
Kumar S, Singh A, Dajus D, Biswas SP (2009). Physico-chemical parameters and fish enumeration of Maijan beel (wetland) of upper Assam. Geobios. 36:184-188.
 
Magadza CHD (1980). The distribution of zooplankton in the Sanyati Bay, Lake Kariba; A multivariable analysis. Hydrobiologia, 70: 57-67.
Crossref
 
Marcus HN (1982). Photoperiodic and temperature regulation of diapause in Labidocera aestiva (Copepoda: Calanoida). Biol. Bull. 162(1):45-52.
Crossref
 
Pandit AK (1980). Biotic factor and food chain structure in some typical wetlands of Kashmir. Ph.D. thesis, University of Kashmir, Srinagar-190006, J and K, India.
 
Pandit AK (1988). Threats to Kashmir wetlands and their wildlife resources. Environ. Conserv. (Switzerland) 15(3):266-268.
Crossref
 
Pandit AK (2002). Plankton as indicators of trophic status of wetlands. p. 341-360. In: Ecology and Ethology of Aquatic Biota (Arvind Kumar, ed.). Daya Publishing House, New Delhi-110002.
 
Patalas K (1972). Crustacean plankton and the eutrophication of St. Lawrence Great Lakes. J. Fish. Res. Bd. Can. 29:1451-1462.
Crossref
 
Pennak RW(1978). Freshwater Invertebrates of United States of America. Wiley Interscience Pub., N. Y.
 
Pinto-Coelho R, Pinel-Alloul B, Méthot G, Havens KE (2005). Crustacean zooplankton in lakes and reservoirs of temperate and tropical regions: variation with trophic status. Can. J. Fish. Aquat. Sci. 62:348-361.
Crossref
 
Rossa DC, Lansac-Tôha FA, Bonecker CC, Velho LFM (2001). Abundance of cladocerans in the littoral regions of two environments of the upper Paraná River floodplain, Mato Grosso do Sul, Brazil. Rev. Braz. Biol. 61:45-53.
Crossref
 
Sampaio EV, Rocha O, Matsumura-Tundisi T, Tundisi JG (2002). Composition and abundance of zooplankton in the limnetic zone of seven reservoirs of the Paranapanema River, Brazil. Braz. J. Biol. 62:525-545.
Crossref
 
Santer B, Lampert W (1995). Summer diapause in cyclopoid copepods: Adaptive response to a food bottleneck? J. Ani. Ecol., 64:600-613.
Crossref
 
Scheffer M (1998). Ecology of Shallow Lakes. London, Chapman e Hall. 358p.
 
Scheffer M, Van Geest GJ, Zimmer K, Jeppesen E, Sondergaard M, Butler MG, Hanson MA, Declerck S, De Meester L (2006). Small habitat size isolation can promote species richness: Second-order effects on biodiversity in shallow lakes and ponds. Oikos 112:227-231.
Crossref
 
Sendacz S (1984). A study of the zooplankton community of Billings reservoir, São Paulo, Brazil. Hydrobiologia 113:121-127.
Crossref
 
Shah JA, Pandit AK (2013). Relation between physico-chemical limnology and crustacean community in Wular lake of Kashmir Himalaya, Pak. J. Biol. Sci. 16(19): 976-983.
Crossref
 
Stemberg RS, Lazorchak JM (1994). Zooplankton assemblages responses to disturbance gradients. Can. J. Fish. Aquat. Sci. 51:2435-2447.
Crossref
 
Straile D, Geller W (1998). Crustacean zooplankton in Lake Constance from 1920 to 1995: Response to eutrophication and re-oligotrophication. Archiv für Hydrobiologie (special issue advances in limnology) 53:255-274.
 
Tavernini S (2008). Seasonal and inter-annual zooplankton dynamics in temporary pools with different hydroperiods. Limnologica 38:63-75.
Crossref
 
Tonno H, Kunnap H, Nõges T (2003). The role of zooplankton grazing in the formation of clear water phase in a shallow charophyte dominated lake. Hydrobiologia 06:353-358.
Crossref
 
Williams WD (1999). Conservation of wetlands in drylands: A key global issue. Aquat. Conserv. 9:517-522.
Crossref
 
Zago MS (1976). The planktonic Cladocera (Crustacea) and aspects of eutrophication of Americana reservoir. Brazil. Biol. Zool. USP 1:105-145.