Published March 29, 2016 | Version v1
Journal article Open

Induction of histopathological lesions in renal tissue of the fish Labeo rohita upon exposure to municipal wastewater of Tung Dhab Drain, Amritsar, India

Authors/Creators

Description

Kaur, Rajbir, Dua, Anish (2016): Induction of histopathological lesions in renal tissue of the fish Labeo rohita upon exposure to municipal wastewater of Tung Dhab Drain, Amritsar, India. Turkish Journal of Zoology 40 (5): 645-654, DOI: 10.3906/zoo-1511-33, URL: http://dx.doi.org/10.3906/zoo-1511-33

Files

source.pdf

Files (6.3 MB)

Name Size Download all
md5:ffba4574f7db20ca1d81e4e314f800a1
6.3 MB Preview Download

Linked records

Additional details

Identifiers

LSID
urn:lsid:plazi.org:pub:FFBA4574FFDBFFCAFF81FFE3FFF8FFA1

Related works

Cites
Publication: 10.5337/2013.200 (DOI)
Has part
Figure: 10.5281/zenodo.13200677 (DOI)
Figure: 10.5281/zenodo.13200679 (DOI)
Figure: 10.5281/zenodo.13200681 (DOI)
Figure: 10.5281/zenodo.13200683 (DOI)

References

  • Al-Sabti K, Metcalfe CD (1995). Fish micronuclei for assessing genotoxicity in water. Mutat Res 343: 121-135.
  • Amerasinghe P, Bhardwaj RM, Scott C, Jella K, Marshall F (2013). Urban wastewater and agricultural reuse challenges in India. International Water Management Institute (IWMI) Colombo, Sri Lanka, doi:10.5337/2013.200.
  • APHA, AWWA, WEF (2005). Standard methods for the examination of water and wastewater. Vol 21. Washington, DC: American Public Health Association, American Water Works Association.
  • Camargo MMP, Martinez CBR (2007). Histopathology of gills, kidney and liver of a Neotropical fish caged in an urban stream. Neotrop Ichthyol 5: 327-336.
  • Environmental Protection Agency (2002). Short-Term Methods for Estimating the Chronic Toxicity of Effluents and Receiving Waters to Freshwater Organisms. 4th edition. Washington, DC: Environmental Protection Agency, pp. 1-45.
  • Environmental (Protection) Amendment Rules (2012). General standards for discharge of environmental pollutants part-a: effluents into inland surface waters. Environmental (Protection) Amendment Rules, G.S.R. 152 (E), Ministry of Environment and Forests, India.
  • European Business and Technology Centre (2011). Water and wastewater in India: a programme co-funded by the European Union and coordinated by the Association of European Chambers of Commerce and Industry, European Business and Technology Centre (EBTC), New Delhi.
  • Gleeson T, Wada Y, Bierkens MFP, van Beek LPH (2012). Water balance of global aquifers revealed by groundwater footprint. Nature 488: 197-200.
  • Jiraungkoorskul W, Upatham ES, Kruatrachue M, Sahaphong S, Vichasri-Grams S, Pokethitiyook P (2003). Biochemical and histopathological effects of glyphosate herbicide on Nile tilapia (Oreochromis niloticus). Environ Toxicol 18: 260-267.
  • Kane AS, Salierno JD, Brewer SK (2005). Fish models in behavioral toxicology: automated techniques, updates and perspectives. In: Ostrander GK, editor. Methods in Aquatic Toxicology.Boca Raton, FL, USA: Lewis Publishers, pp. 559-590.
  • Kaur R, Dua A (2015a). 96 h LC50, behavioural alterations and histopathological effects due to wastewater toxicity in a freshwater fish Channa punctatus. Environ Sci Pollut Res 22: 5100-5110.
  • Kaur R, Dua A (2015b). Scales of freshwater fish Labeo rohita as bioindicators of water pollution in Tung Dhab Drain, Amritsar, Punjab, India. J Toxicol Environ Health A 78: 388-396.
  • Kaur R, Dua A (2015c). Colour changes in Labeo rohita (Ham.) due to pigment translocation in melanophores, on exposure to municipal wastewater of Tung Dhab Drain, Amritsar, India. Environ Toxicol Phar 39: 747-757.
  • Kurtovic B, Teskeredzic E, Teskeredzic Z (2008). Histological comparison of spleen and kidney tissue from farmed and wild European sea bass (Dicentrarchus labrax L.). Acta Adriat 49: 147-154.
  • Mela M, Randi MAF, Ventura DF, Carvalho CEV, Pelletier E, Oliveira Ribeiro CA (2007). Effects of dietary methylmercury on liver and kidney histology in the neotropical fish Hoplias malabaricus. Ecotoxicol Environ Saf 68: 426-435.
  • Nsofor CI, Ikpeze OO, Ngenegbo UC, Ikeogu CF, Okonkwo JC (2014). Histopathological alterations in the liver and kidney of the fish Chrysichthys nigrodigitatus due to heavy metals in Niger River. JNSR 4: 11-18.
  • Ortiz JB, De-Canals MHG, Sarasquete C (2003). Histopathological changes induced by lindane (γ-HCH) in various organs of fishes. Sci Mar 67: 53-61.
  • Poleksic V, Mitrovic-Tutundzic V (1994). Fish gills as a monitor of sublethal and chronic effects of pollution. In: Muller R, Lloyd R, editors. Sublethal and Chronic Effects of Pollution on Freshwater Fish. Oxford, UK: FAO Fishing News Books, pp. 339-352.
  • PWSSB (2006). Status of Amritsar Sewerage Project under JICA. The Punjab Water Supply & Sewerage Board, Executive Engineer, Punjab W/S & Sewerage Division, Amritsar, India.
  • Raskovic B, Poleksic V, Zivic I, Spasic M (2010). Histology of carp (Cyprinus carpio L.) gills and pond water quality in semiintensive production. Bulg J Agric Sci 16: 253-262.
  • Schwaiger J, Wanke R, Adam S, Pawert M, Honnen W, Triebskorn R (1997). The use of histopathological indicators to evaluate contaminant-related stress in fish. J Aquat Ecosyst Stress Recovery 6: 75-86.
  • Silva AG, Martinez CBR (2007). Morphological changes in the kidney of a fish living in an urban stream. Environ Toxicol Phar 23: 185-192.
  • Takashima F, Hibiya T (1995). An Atlas of Fish Histology: Normal and Pathological Features. Tokyo, Japan: Kodansha Ltd.
  • Tetreault GR, Bennett CJ, Cheng C, Servos MR, McMaster MG (2012). Reproductive and histopathological effects in wild fish inhabiting an effluent-dominated stream, Wascana Creek, SK, Canada. Aquat Toxicol 110-111: 149-161.
  • United States Geological Survey (2009). Earth's water distribution, United States Geological Survey. Retrieved 13 May 2009.