AccScience Publishing / AJWEP / Volume 9 / Issue 4 / DOI: 10.3233/AJW-2012-9_4_05
RESEARCH ARTICLE

Quality Assessment of Soils in Thiruvananthapuram District, South India Using Nematodes as Bio-indicators

K.S. Lakshmy1 D.S. Jaya1* C. Mohandas2
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1 Department of Environmental Sciences, University of Kerala, Karyavattom P.O. Thiruvananthapuram – 698 851
2 Central Tuber Crops Research Institute, Sreekaryam, Thiruvananthapuram – 695 017
AJWEP 2012, 9(4), 25–32; https://doi.org/10.3233/AJW-2012-9_4_05
Submitted: 14 July 2011 | Accepted: 7 September 2012 | Published: 1 January 2012
© 2012 by the Author(s). This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution -Noncommercial 4.0 International License (CC-by the license) ( https://creativecommons.org/licenses/by-nc/4.0/ )
Abstract

Nematodes represent a very abundant group of soil organisms in the food web and are important for soil quality. They are both taxonomically and functionally diverse, respond quickly to soil perturbation and have much potential as indicators of soil health. In the present study, the impact of contaminants on soil health has been addressed through the measurement of nematode abundance. Different categories of land use areas in the rural and urban sites of Thiruvananthapuram District receiving different types of contaminants were selected for this study after conducting a reconnaissance survey of the study area. Control areas which are in a benign environment were also identified in both rural and urban areas of Thiruvananthapuram District. Soil samples were collected from the selected stations in pre-monsoon, monsoon and post-monsoon seasons during the period April 2009 to January 2010 from the selected stations, and the physico-chemical characteristics, heavy metal content and nematode abundance were determined. The results showed that the soils of market area having the highest amount of decaying matter were rich in nematode density. The reason for this may be due to the fact that saprophytic nematodes can flourish well in that environment. It was also noted that the nematodes were scarce in the soils of gasoline station area contaminated with hazardous wastes and chemicals which will unfavourably affect the nematode population. The nematode abundance in the soils of the study stations are in the order: market area > sewage disposal area > agricultural area > benign environment> industrial area > road-side area > gasoline station area > coastal area. Nematodes were abundant in areas where the heavy metal concentrations were low, thus indicating a negative correlation.

Keywords
Bio-indicator
contaminants
soil
nematodes
heavy metals
Conflict of interest
The authors declare they have no competing interests.
References

Alloway, B.J. (1996). Soil pollution and Land contamination. In: Pollution-causes, effects and control. Third edition. Roy M. Harrison (ed.). The Royal Society of Chemistry, Cambridge.

Awashthi, S.K. (2000). Prevention of Food Adulteration Act No. 37 of 1954. Central and State Rules amended for 1999 (3rd edition), Ashoka Law House, New Delhi.

Bongers, T. (1990). The maturity index: An ecological measure of environmental disturbance based on nematode species composition. Oecologia, 83: 14-19.

Dasgupta, M.K. (1998). Nematode counting. In: Phyto- nematology. Naya Prakash, Calcutta.

Dechang Han, Xiaoke Zhang, Vijay Vikram Singh Tomar, Qi Li, Dazhong Wen and Wenju Liang (2009). Effects of heavy metal pollution of highway origin on soil nematode guilds in North Shenyang, China. Journal of Environmental Sciences, 21(3): 193-198.

Ewers (1991). Standards, guidelines and legislative regulations concerning metals and their compounds. In: Merian E.
(ed.). Metals and their compounds in the environment: Occurrence, Analysis and Biological relevance. Weinheim: VCH.

Fitter, A.H. and R.K.M. Hay (1987). Environmental Physiology of Plants. Academic Press, London, UK.

Goodey, J.B. (1963). Soil and Fresh water nematodes. Butler and Tanner Limited, Great Britain.

Gupta, P.K. (1999). Soil, Plant, Water and Fertilizer Analysis. Agro Botanica, Bikaner, India.

Ivana Sochova, Jakub Hofman and Ivan Holoubek (2006). Using nematodes in soil ecotoxicology. Environment International, 32(3): 374-383.

Jing Xiao, Qi Rui, Yuling Guo, Xingya Chang and Dayong Wang (2009). Prolonged Manganese exposure induces severe defects in lifespan, development and reproduction possibly by altering oxidative stress response in Caenorhabditis elegans. Journal of Environmental Sciences, 21(6): 842-848.

Kazunori Otobe, Kenji Itou and Takayuki Mizukubo (2004). Micro-moulded substrates for the analysis of structure- dependent behaviour of nematodes. Indian Journal of Nematology, 6(1): 73-77.

Kogel-Knabner, I. (2000). Analytical approaches for characterizing soil matter. Org Geochem., 31: 609-625.

Lee, K.E. and R.C. Foster (1991). Soil fauna and soil structure. Australian Journal of Soil Research, 29: 745-775.

Lytle, C.M., Smith, B.N. and C.Z. McKinnon (1995). Manganese accumulation along Utah roadways: A possible indication of motor vehicle exhaust pollution. Science of the Total Environment, 162(2-3): 105-109.

Michael, P. (1984). Ecological methods for Field and Laboratory Investigations. Tata McGraw-Hill Publishing Company Ltd., New Delhi.

Papendick, R.I. and G.S. Campbell (1985). Theory and measurement of water potential. In: Water potential relations in soil microbiology. Parr, J.F., Gardner, W.R., Elliot, L.F. (eds). Soil Science Society of America, Madison, WI.

Richard, G. Burns and P. Dick Richard (2002). Enzymes in our environment activity, ecology and applications. Marcel Dekker, Inc., U.S.A., pp. 614.

Sara Sanchez-Moreno, Julio A. Camargo and Alfonso Navas (2006). Ecotoxicological assessment of the impact of residual heavy metals in the Guadiamar River Basin (Southern Spain). Environmental Monitoring and Assessment, 116(1-3): 245-262.

Sathyanarayana, R. (1997). Distribution of extractable micro- nutrients in soils of selected major land resources areas of Kerala. M.Sc. (Agriculture) Thesis. Kerala Agriculture University, Vellayanikkara, Thiruvananthapuram.

Saxena, M.M. (1994). Environmental Analysis—Water, Soil and Air, Agro Botanica Publishers, Bikaner, India.

Smiles, D.E. (1988). Aspects of the physical environment of soil organisms. Biology and Fertility of Soils, 6: 204-215.

Stanisiav Pen-Mouratov, Nosir Shukurov and Yosef Steingerger (2008). Influence of industrial heavy metal pollution on soil free-living nematode population. Environmental Pollution, 152(1): 172-183.

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Asian Journal of Water, Environment and Pollution, Electronic ISSN: 1875-8568 Print ISSN: 0972-9860, Published by AccScience Publishing