Altitudinal Variation in Soil Properties with Reference to Forest Structure and Composition in Western Himalaya

Altitudinal Variation in Soil Properties with Reference to Forest Structure and Composition in Western Himalaya

Authors

  •   Zubair A. Malik   Department of Botany, Govt. HSS Harduturoo, Anantnag, J&K
  •   Sheikh Marifatul Haq   Centre for Biodiversity & Taxonomy, Department of Botany, University of Kashmir, Srinagar, J&K
  •   Rainer W. Bussmann   Department of Ethnobotany, Institute of Botany, Ilia State University, 0105 Tbilisi, Georgia
  •   Jahangeer A. Bhat   College of Horticulture and Forestry, Rani Lakshmi Bai Central Agricultural University, Gwalior Road, Jhansi, Uttar Pradesh
  •   A. B. Bhatt   Department of Botany & Microbiology, HNB Garhwal University Srinagar Garhwal, Uttarakhand-246174

DOI:

https://doi.org/10.36808/if/2021/v147i3/151484

Keywords:

Soil Physical Properties, Forest Structure, Species Richness, Total Basal Cover, Diversity, Altitude, Western Himalaya.

Abstract

The present study was carried out to determine the soil physical properties in relation to the forest structure and composition at different altitudes in Western Himalaya. The composite soil samples were obtained from three (viz. upper, middle and lower) depths. The average sand, silt and clay contents ranged between 62.87 to 79.19%; 2.09 to 5.82% and 17.58 to 31.20% respectively. The soils in the study area did not show much variation as far as the texture is concerned and only two textural classes (sandy clay loam and/or sandy loam) were found throughout the study area. The regression analysis indicated a decline in percentage of silt (r = - 0.71, P = 0.08) and clay (r = -0.67, P = 0.122) with altitude and a significant positive relationship between altitude and percentage of sand (r = 0.790, P = 0.05). Soil moisture showed significant positive correlations with community parameters like diversity of species (r = 0.961, P < 0.01); density of trees (r = 0.903, P < 0.01); TBC of trees (r = 0.786, P < 0.05); species richness (r = 0.971, P < 0.01) and canopy cover (r = 0.883, P < 0.05). Water holding capacity also exhibited similar correlations.

References

Arya M.K. (2014). Assessment of physico-chemical properties of soil along altitudinal gradients in a protected forest in the Kumaun Himalayas India, Nature and Science, 12(2): 32-37.

Bahuguna Y.M., Gairola S., Semwal D.P., Uniyal P.L. and Bhatt A.B. (2012). Soil physico-chemical characteristics of bryophytic vegetation residing Kedarnath Wildlife Sanctuary (KWLS), Garhwal Himalaya, Uttarakhand, India, Indian journal of science and technology, 5(4): 2547-2553.

Bangroo S.A. (2013). Effect of aspect and altitude on soil characteristics in forest soils of Mawar range of Langate forest division, Ph. D. Thesis, SKUAST, Srinagar: 133pp.

Bhatnagar H.P. (1965). Soils from different quality sal (Shorea robusta) forests of Uttar Pradesh, Tropical Ecology, 6: 56-62.

Bhattarai K.P. and Mandal T.N. (2012). Soil microbial biomass in relation to fine root in Kiteni hill Sal forest of Ilam, eastern Nepal, Nepalese Journal of Biosciences, 2: 80-87.

Brady N.C. (1996). The nature and properties of soils, (10th ed). Prentice Hall, New Delhi.

Champan J.L. and Reiss M.J. (1992). Ecology principals and application. Cambridge University, UK, 1992, p 294.

Charan G., Bharti V.K., Jadhav S.E., Kumar S., Acharya S., Kumar P. and Srivastava R. B. (2013). Altitudinal variations in soil physico-chemical properties at cold desert high altitude, Journal of soil science and plant nutrition, 13(2): 267-277.

Deb P., Debnath P., Denis A.F. and Lepcha O.T. (2019). Variability of soil physicochemical properties at different agroecological zones of Himalayan region: Sikkim, India, Environment, Development and Sustainability, 21(5): 2321 2339. https://doi.org/10.1007/s10668-018-0137-8

Deb P., Debnath P. and Pattanaaik S.K. (2014). Physicochemical properties and water holding capacity of cultivated soils along altitudinal gradient in South Sikkim, India, Indian Journal of Agricultural Research, 48(2): 120-126. DOI: 10.5958/j.0976-058X.48.2.020.

Donahue R.L., Miller R.W. and Schickluna J.C. (1987). An introduction to soil and plant growth 5th edition. Prentice Hall of India Pvt. Ltd., New Delhi.

Eni D.D., Iwara A.I. and Offiong R.A. (2012). Analysis of soilvegetation interrelationships in a south-southern secondary forest of Nigeria. International Journal of Forestry Research, 1-8. doi:10.1155/2012/469326

Escadafal R., Girard M.C. and Courault D. (1989). Munsell soil color and soil reflectance in the visible spectral bands of Landsat MSS and TM data. Remote Sensing of Environment, 27(1): 37-46.

Gaur U.N., Raturi G.P. and Bhatt A.B. (2005). Current vegetation pattern along glacial landscape in Central (Garhwal) Himalaya, India, Journal of Mountain Science, 2(3): 255-264. DOI: https://doi.org/10.1007/BF02973199

Hillel D. (1998). Environmental Soil Physics. Academic Press, San Diego, CA. http://dx.doi.org/10.1016/j.jep.2015.06.002. Available online at: https://www.ars.usda.gov/ARSUserFiles/50600000/Products-Reprints/2005/1279.pdf

Jha M.N. and Pande P. (1980). Loss of soil moisture as affected by decomposing leaf litter of different forest species. Indian Forester, 106(5): 352-356.

Johnson N.C., Miller R.M. and Wilson G.W.T. (2017). Mycorrhizal interactions with climate, soil parent material and topography. In: Mycorrhizal mediation of soil: fertility, structure, and carbon storage (N.C. Johnson, C. Gehring and J. Jansa, eds.), Elsevier, pp 47-66. https://doi.org/10.1016/ B978-0-12-804312-7.00004-8

Khera N., Kumar A., Ram J. and Tewari A. (2001). Plant biodiversity assessment in relation to disturbances in midelevational forest of Central Himalaya, India, Tropical Ecology, 42(1): 83-95.

Kumar M., Singh H., Bhat J.A., and Rajwar G.S. (2013). Altitudinal variation in species composition and soil properties of Banj Oak and Chir Pine dominated forests, Journal of forest and environmental science, 29(1): 29-37.

Malik Z.A., Bhat J.A., Ballabha R., Bussmann R.W. and Bhatt A.B. (2015). Ethnomedicinal plants traditionally used in health care practices by inhabitants of Western Himalaya, Journal of Ethnopharmacology, 172: 133-144. doi: 10.1016/j.jep.2015.06.002

Malik Z.A., Bhat J.A. and Bhatt A.B. (2014). Forest resource use pattern in Kedarnath Wildlife Sanctuary and its fringe areas (a case study from Western Himalaya, India), Energy Policy, 67: 138-145. https://doi.org/10.1016/j.enpol.2013.12.016.

Malik Z.A. and Bhatt A.B. (2015). Phytosociological analysis of woody species in Kedarnath Wildlife Sanctuary and its adjoining areas in Western Himalaya, India, Journal of forest and environmental science, 31(3): 149-163.

Malik Z.A. and Bhatt A.B. (2016). Regeneration status of tree species and survival of their seedlings in Kedarnath Wildlife Sanctuary and its adjoining areas in Western Himalaya, India, Tropical Ecology, 57(4): 677-690.

Malik Z.A., Pandey R. and Bhatt A.B. (2016). Anthropogenic disturbances and their impact on vegetation in Western Himalaya, India, Journal of Mountain Science, 13(1): 69 82.https://doi.org/10.1007/s11629-015-3533-7

Malik Z.A. (2014). Phytosociological behaviour, anthropogenic disturbances and regeneration status along an altitudinal gradient in Kedarnath Wildlife Sanctuary (KWLS) and its adjoining areas, Ph.D. Thesis, HNB Garhwal University, Srinagar Uttarakhand: 29 pp.

Mishra R. (1968). Ecology Workbook. Oxford and IBH Publication Co., Calcutta.

Mukesh Manhas, R.K., Tripathi A. K., Raina A.K., Gupta M.K. and Kamboj S.K. (2011). Sand and clay mineralogy of Sal forest soils of the Doon Siwalik Himalayas, Journal of earth system science, 120(1): 123-144. DOI: https://doi.org/10.1007/s12040-011-0008-2

Nazir T. (2009). Estimation of site quality of important temperate forest cover on the basis of soil nutrient and growing stock in Garhwal Himalaya, Ph. D. Thesis, HNB Garhwal University, Srinagar (Garhwal), Uttarakhand, India:164pp.

Osman K.T. (2013). Forest Soils: Properties and Management, Springer International Publishing, Switzerland, pp: 19-28. doi: 10.1007/978-3-319-02541-4

Othman Y., Shamshuddin J. and Sains T. (1982). Kuala Lumpur: Dewan Bahasa dan Pustaka.

Pandeya S.C. (1968). Practical Methods in Ecology. Oxford and IBH, New Delhi.

Perry D.A. (1994). Forest ecosystems. The Johns Hopkins University Press. Baltimorew, Maryland, USA.

Phogat V.K., Tomar V.S. and Dahyia R. (2015). Soil Physical Properties. In: Soil Science: An Introduction (R.K. Rattan, J.C. Katyal, B.S. Dwivedi, A.K. Sarkar, T. Bhattachatyya, J.C.

Tarafdar and S.S. Kukal (eds), Indian Society of Soil Science,New Delhi. 2015. 135-171. Available at https://www.researchgate.net/publication/297737054 (accessed on 12th January, 2020).

Pidwirny M. (2004). Introduction to Environmental Issues–The Soil Resources. Physical Geography Network. Department of Geography, Ockanagar University College.

Querejeta J.I. (2017). Soil water retention and availability as influenced by mycorrhizal symbiosis: consequences for individual plants, communities, and ecosystems. In: Mycorrhizal mediation of soil: fertility, structure, and carbon storageN. C. Johnson, C. Gehring, J. Jansa eds.) pp: 299 317. https://doi.org/10.1016/B978-0-12-804312-7.00017-6

Raina A.K. and Gupta M.K. (2009). Soil and vegetation studies in relation to parent material of Garhwal Himalayas, Uttarakhand (India). Annals of Forestry, 17(1): 71-82.

Ramade F. (1981). Ecology of Natural Resources. Wiley and Sons, Chichester, UK.

Reicosky D. (2005). Agronomic quantification of potential soil organic matter increase with direct seeding in Ukraine. In: 2nd International Conference on Sustainable and Effective Agriculture Using a No-Till System Approach (pp. 23-33). Dnipropetrovsk.

Saha S., Rajwar G.S. and Kumar M. (2018). Soil properties along altitudinal gradient in Himalayan temperate forest of Garhwal region, Acta EcologicaSinica, 38(1): 1-8.DOI:https://doi.org/10.1016/j.chnaes.2017.02.003

Sarangzai A.M., Siddiqui M.F., Ahmed M., Hussain M.I., Laghari S.K. and Ahmed A. (2015). Relationship between soil properties and natural regeneration pattern of Juniperus excelsa forest in Ziarat, Balochistan, Pakistan Journal of Botany, 47(3): 905-910.

Schinner F. (1982). Soil microbial activities and litter decomposition related to altitude, Plant and Soil, 65(1):87-94. DOI: https://doi.org/10.1007/BF02376806

Schoenholtz S.H., Van Miegroet H. and Burger J.A. (2000). A review of chemical and physical properties as indicators of forest soil quality: challenges and opportunities, Forest ecology and management, 138 (1-3): 335-356. https://doi.org/10.1016/S0378-1127(00)00423-0

Semwal D.P., Uniyal P.L., Bahuguna Y.M. and Bhatt A.B. (2009). Soil nutrient storage under different forest types in a part of central Himalayas, India, Annals of Forestry, 17(1): 43-52.

Semwal S. (2006). Studies on phytosociology, diversity patterns and competition along an altitudinal gradient in a part of lesser Himalaya in Garhwal, Uttaranchal. Ph. D. Thesis, HNB Garhwal University, Srinagar (Garhwal), Uttarakhand, India, pp103.

Shameem S.A., Kangroo N.I. and Bhat G.A. (2011). Comparative assessment of edaphic features and herbaceous diversity in lower Dachigam National Park, Kashmir, Himalaya, Journal of Ecology and the Natural Environment, 3(6):196-204.

Shannon C.E, and Wiener W. (1963). The Mathematical Theory of Communication. University of Illinois Press, Urbana.

Sharma C.M., Gairola S., Ghildiyal S.K. and Suyal S. (2010). Physical properties of soils in relation to forest composition in moist temperate valley slopes of the Central Western Himalaya, Journal of forest and environmental science, 26(2): 117-129.

Simpson E.H. (1949). Measurement of Diversity, Nature, 163: 688-690.

Singh A.K., Prasad A. and Singh B. (1986). Availability of Phosphorus and Potassium and its Relationship with some Important Physico-chemical Properties of some forest Soils of Pali Range, (Shahdol, MP), Indian Forester, 112(12): 1094-1103.

Singh S.P. and Singh J.S. (1986). Structure and function of the Central Himalayan oak forests. Proceedings: Plant Sciences, 96(3): 159-189.

Singh S., Malik Z.A. and Sharma C.M. (2016). Tree species richness, diversity, and regeneration status in different oak (Quercus spp.) dominated forests of Garhwal Himalaya, India, Journal of Asia-Pacific Biodiversity, 9(3): 293-300. https://doi.org/10.1016/j.japb.2016.06.002

Tewari G., Khati D., Rana L., Yadav P. Pande C., Bhatt S., Kumar V., Joshi N. and Joshi P.K. (2016). Assessment of physicochemical properties of soils from different land use systems in Uttarakhand, India, Journal of Chemical Engineering and Chemistry Research, 3(11): 1114-1118.

Tiwari R.K. and Bajpai S.P. (2004). Physico-chemical properties of soil from the core area in Kanha Tiger Reserve, Plant Archives, 4: 71-75.

Tóth B., Weynants M., Nemes A., Makó A., Bilas G. and Tóth G. (2015). New generation of hydraulic pedotransfer functions for Europe, European journal of soil science, 66(1): 226-238.https://doi.org/10.1111/ejss.12192

Verma A.K. and Garkoti S.C. (2019). Population structure, soil characteristics and carbon stock of the regenerating banj oak forests in Almora, Central Himalaya, Forest Science and Technology, 15(3): 117-127.

Wang C., Zhao C., Xu Z., Wang Y. and Peng H. (2013). Effect of vegetation on soil water retention and storage in a semiarid alpine forest catchment, Journal of Arid Land, 5(2): 207 219. DOI:https://doi.org/10.1007/s40333-013-0151-5.

Whittaker R.H. (1972). Evolution and measurement of species diversity, Taxon, 21: 213-251.

Zhou X., Zhou Y., Zhou C., Wu Z., Zheng L., Hu X. and Gan J. (2015). Effects of cutting intensity on soil physical and chemical properties in a mixed natural forest in South-eastern China, Forests, 6(12): 4495-4509. doi:10.3390/f612438.

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Published

2021-03-18

How to Cite

Malik, Z. A., Haq, S. M., Bussmann, R. W., Bhat, J. A., & Bhatt, A. B. (2021). Altitudinal Variation in Soil Properties with Reference to Forest Structure and Composition in Western Himalaya. Indian Forester, 147(3), 288–301. https://doi.org/10.36808/if/2021/v147i3/151484

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