International Journal of
Biodiversity and Conservation

  • Abbreviation: Int. J. Biodivers. Conserv.
  • Language: English
  • ISSN: 2141-243X
  • DOI: 10.5897/IJBC
  • Start Year: 2009
  • Published Articles: 679

Full Length Research Paper

Extended distribution of testate amoebae (Protozoa: Rhizopoda) to Indian fauna from Sangla Valley, Himachal Pradesh, India

Bindu L.
  • Bindu L.
  • Marine Biology Regional Centre, Zoological Survey of India, 130, Santhome High Road, Chennai-600028, India.
  • Google Scholar


  •  Received: 14 March 2019
  •  Accepted: 20 May 2019
  •  Published: 31 July 2019

References

Bindu L (2018). Protozoa : Rhizopoda : Faunal Resources of Cold Desert Spiti Valley and Chandertal lake, Himalayan Ecosystem Series. Zoological Survey of India 4:13-19.

 

Beyens I, Chardez D, de Landtsheer R (1986). Testate amoebae from moss and lichen habitats in the Arctic. Polar Biology 5:73-165
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.Chattopadhyay P, Das AK (2003). Morphology, morphometry and ecology of moss dwelling testate amoebae (Protozoa : Rhizopoda) of north and north-east India. Memoirs of the Zoologica Survey of India 19(4):1-16.

 
 

Foissner W (1992). Estimating the species richness of soil protozoa using non-flooded petri dish method. In Protocols in Protozoology. Lee JJ, Soldo AT (eds), Allen Press.

 
 

Mattheeussen R, Ledeganct P, Vincke S, Van de Vijver B, Nijs I, Beyens L (2005). Habitat selection of aquatic testate amoebae communities on Qeqertarsuq (Disko Island), West Greenland. Acta Protozoologica 44:253-263.

 
 

Das AK, Tiwari DN, Nandi R, Sarkar NC, Saha D (2004). Freeliving and symbiotic protozoa. Zoological Survey of India State fauna series 5: Fauna of Andhra Pradesh Part-6:423-466.

 
 

Nguyen H, Gilbert D, Bernard N, Mitchell EAD, Badot PM (2004). Relationship between atmospheric pollution characterized by NO2 concentrations and testate amoebae and diversity. Acta Protozoologica 43:233-329.

 
 

Nguyen-Viet H, Gilber D, Mitchell EAD, Badot PM, Bernard N (2007). Effect of experimental lead pollution on the microbial communities associated with Sphagnum fallax (Bryophyta). Microbiology and Ecology 54:232-241.
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Payne R, Mitchell EAD, Nguyen-Viet H, Gilbert D (2012). Can pollution bias peatland palaeoclimate reconstruction? Quaternary Research 78:3-17.
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Rana JC, Dutta M, Rathi RS (2012). Plant genetic resources of the Indian Himalayan Region-an overview. Indian Journal of Genetics 72(2):115-129.

 
 

Sharma P, Samant SS (2014). Assessment of fuel resource diversity and utilization pattern in Nargu Wildlife sanctuary in Himachal Pradesh, N W Himalaya. International Journal of Biodiversity and Conservation 6(1):17-27.
Crossref

 
 

Sullivan ME, Booth RK (2011). The potential influence of short-term environmental variability on the composition of testate amoeba communities in sphagnum peatlands. Microbial Ecology 62:80-93.
Crossref

 
 

Tsyganov AN, Keuper F, Aerts R, Beyens I (2013). Flourish or Flush : Effects of Simulated extreme Rainfall Events on sphagnum dwelling testate amoebae in a subarctic bog (Abisko, Sweden). Microbial Ecology 65:10-101.
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Vincke S, Gremmen N, Beyens I, Van de Vijver B (2004a). The moss dwelling testaceans fauna of IIe de Possession. Polar Biology 27:753-766.
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