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Research Article

Soil quality assessment of different land use systems of peri-urban - rural landscape of Deccan plateau, hot semi-arid agro-ecosystem

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Pages 3060-3072 | Received 10 Sep 2022, Accepted 26 Mar 2023, Published online: 31 Mar 2023

References

  • Amorim HCS, Ashworth AJ, Brye KR, Wienhold BJ, Savin MC, Owens PR, Silva SHG. 2021. Soil quality indices as affected by long-term burning, irrigation, tillage, and fertility management. Soil Sci Soc Am J. 85(2):379–395. doi:10.1002/saj2.20188.
  • Amorim HCS, Ashworth AJ, Wienhold BJ, Savin MC, Allen FL, Saxton AM, Curi N. 2020. Soil quality indices based on long-term conservation cropping systems management. Agrosyst Geosci Environ. 3(1):1–13. doi:10.1002/agg2.20036.
  • Andrews SS, Mitchell JP, Mancinelli R, Karlen DL, Hartz TK, Horwath WR, Pettygrove GS, Scow KM, Munk DS. 2002. On-farm assessment of soil quality in California’s central valley. Agron J. 94(1):12–23. doi:10.2134/agronj2002.1200.
  • Armenise E, Gordon RMA, Stellacci AM, Ciccarese A, Rubino P. 2013. Developing a soil quality index to compare soil fitness for agricultural use under different management in the Mediterranean environment. Soil Tillage Res. 130:91–98. doi:10.1016/j.still.2013.02.013.
  • Ashworth AJ, Allen FL, Wight JP, Saxton AM, Tyler DD, Sams CE. 2014. Soil organic carbon sequestration rates under crop sequence diversity, bio-covers, and no-tillage. Soil Sci Soc Am J. 78(5):1726–1733. doi:10.2136/sssaj2013.09.042.
  • Ayers RS, Westcot DW. 2005. Water quality for agriculture. 29RomeFood and Agriculture Organization of the United Nations. Rome http://www.fao.org/3/10234e/T0234E00.htm#TOCaccessed on 3 March 2019
  • Berger KC, Troug E. 1939. Boron determination in soils and plants. Ind Eng Chem (Anal. 39(10):540–545. doi:10.1021/ac50138a007.
  • Black CA. 1965. Methods of soil analysis, part I. physical and microbiological properties. In: Evans DD, Wite JL, Ensminger LE, Cark FE, editors. Agronomy Monograph No. 9. 2nd ed. Madison, Wisconsin, USA: Am Soc Agron. Inc; p. 18–25.
  • Brejda JJ, Moorman TB, Smith JL, Karlen DL, Allan DL, Dao TH. 2000. Distribution and variability of surface soil properties at a regional scale. Soil Sci Soc Am J. 64(3):974–982. doi:10.2136/sssaj2000.643974x.
  • Casida LE, Klein DA, Santoro T. 1964. Soil dehydrogenase activity. Soil Sci. 98(6):371–376. doi:10.1097/00010694-196412000-00004.
  • Castro AD, Lopes A, Sousa GDM, Chaer GM, Reis DB, Junior F, Goedert WJ, Mendes DCI. 2013. Interpretation of microbial soil indicators as a function of crop yield and organic carbon. Soil Sci Soc Am J. 77(2):461–472. doi:10.2136/sssaj2012.0191.
  • Chandela S, Hadda MS, Mahal AK. 2018. Soil quality assessment through minimum data set under different land uses of submontane Punjab. Commun Soil Sci Plant Anal. 49(6):658–674. doi:10.1080/00103624.2018.1425424.
  • Dengiz O. 2020. Soil quality index for paddy fields based on standard scoring functions and weight allocation method. Arch Agron Soil Sci. 66(3):301–315. doi:10.1080/03650340.2019.1610880.
  • Dhaliwal SS, Sharma BD, Singh B, Khera KL. 2008. Profile distribution of chemical, physical and microbial characteristics in four land use systems of Sadh Di Khadwatershed in submontaneous tract of Punjab. Asian J Soil Sci. 3:316–322.
  • Dhaliwal SS, Singh B. 2013. Depth wise distribution of macronutrients, micronutrients and microbial populations under different land use systems. Asian J Soil Sci. 8:404–411.
  • Dhaliwal SS, Singh B, Sharma BD. 2008. Soil quality and sustainability indices as influenced by potassium distribution in submontaneous tract of Punjab. Indian J Dryland Agric Res Dev. 23:42–47.
  • Dhaliwal SS, Singh B, Sharma BD, Khera KL. 2009. Soil quality and yield trends of different crops in low productive submontaneous tract and highly productive area in Punjab, India. Indian J Dryland Agric Res Dev. 24:39–45.
  • Elmqvist T, Redman CL, Barthel S, Costanza R. 2013. History of urbanisation and the missing ecology. In: Elmqvist T, editor. Urbanisation, biodiversity and ecosystem services: challenges and opportunities. A global assessment. New York: Springer Berlin/Heidelberg; p. 13–30. Chapter 2.
  • Emiru N, Gebrekidan H. 2013. Effect of land use changes and soil depth on soil organic matter, total nitrogen and available phosphorus contents of soils in senbat watershed, western ethiopia. J Agril Bio Sci. 8:206–212.
  • Freixo AA, Ploa M, Guimaraes CM, Silva CA, Fadigas FS. 2002. Estoques de carbono e nitrogênio e distribuição de frações orgânicas de latossolo do cerrado sob diferentes sistemas de cultivo. Rev Bras Cienc Solo. 26(2):425–434. doi:10.1590/S0100-06832002000200016.
  • Guo L, Sun Z, Ouyang Z, Han D, Li F. 2017. A comparison of soil quality evaluation methods for fluvisol along the lower yellow river. CATENA. 152:135–143. doi:10.1016/j.catena.2017.01.015.
  • Gurumurthy KT, Naik BD, Ravikumar D, Ganapathi, Raghu AN, Raghavendra S, Thippeshappa GN, Sindhu HS, Patil A. 2019. Evaluation of soil fertility status of macronutrients and mapping in beguru micro watershed of tarikere taluk of chikkmagaluru district, Karnataka, India. Int J Curr Microbiol App Sci. 9:223–229.
  • Hati KM, Swarup A, Dwivedi AK, Misra AK, Bandyopadhyay KK. 2007. Changes in soil physical properties and organic carbon status at the topsoil horizon of a vertisol of central India after 28 years of continuous cropping, fertilization and manuring. Agr Ecosyst Environ. 119(1–2):127–134. doi:10.1016/j.agee.2006.06.017.
  • Hedlund A, Witter E, An BX. 2003. Assessment of N, P and K management by nutrient balances and flows on peri-urban smallholder farms in southern Vietnam. European J Agron. 20(1–2):71–87. doi:10.1016/S1161-0301(03)00076-5.
  • Jackson ML. 1973. Soil chemical analysis. New Delhi: Prentice Hall Pvt. Ltd.
  • Karlen DL, Cambardella CA, Kovar JL, Colvin TS. 2013. Soil quality response to long-term tillage and crop rotation practices. Soil Tillage Res. 133:54–64. 2013.05.013. doi:10.1016/j.still.2013.05.013.
  • Kavitha C, Sujatha MP. 2015. Evaluation of soil fertility status in various agro ecosystems of Thrissur district, Kerala, India. Int J Agric Crop Sci. 8(3):328–338.
  • Laishram J, Saxena KG, Maikhuri RK, Rao KS. 2012. Soil quality and soil health: a review. Int J Ecol Environ Sci. 38(1):19–37.
  • Li X, Li H, Yang L, Ren Y. 2018. Assessment of soil quality of croplands in the corn belt of Northwest China. Sustainability. 10(1):248. doi:10.3390/su10010248.
  • Lindsay WL, Norwell WA. 1978. Development of DTPA of Soil Test for Zn, Fe, Mn and Cu. J Am Soil Sci. 42(3):421–428. doi:10.2136/sssaj1978.03615995004200030009x.
  • Liu X, Herbert SJ, Hashemi AM, Zhang X, Ding G. 2006. Effects of agricultural management on soil organic matter and carbon transformation – a review. Plant Soil Environ. 52(12):531–543. doi:10.17221/3544-PSE.
  • Mallupattu PK, Reddy JRS. 2013. Analysis of land use/land cover changes using remote sensing data and GIS at an urban area, Tirupati, India. Sci World J. 2013:1–6. doi:10.1155/2013/268623.
  • Mbuthia LW, Martinez AV, De Bryun J, Schaeffer S, Tyler D, Odoi E, Eash N, Walker F, Eash N. 2015. Long term tillage, cover crop, and fertilization effects on microbial community structure, activity: implications for soil quality. Soil Biol Biochem. 89:24–34. doi:10.1016/j.soilbio.2015.06.016.
  • Mcdonald R2013Urbanisation and global trends in biodiversity and ecosystem servicesChapter 3In: Elmqvist T, et aleditorsUrbanisation, biodiversity and ecosystem services: challenges and opportunities. A global assessmentpp. 13–3010.1007/978-94-07-7088-11
  • Moges A, Dagnachew M, Yimer F. 2013. Land use effects on soil quality indicators: a case study of AboWonsho Southern Ethiopia. App Environ Soil Sci. 2013:1–9. doi:10.1155/2013/784989.
  • Mohammadi S, Kalbasi M, Shariatmadari H. 2009. Cumulative and residual effects of organic fertilizer application on selected soil properties, water soluble P, Olsen-p and P sorption index. J Agri Sci Tech. 11(4):487–497.
  • Narayana MR. 2011. Globalization and urban economic growth: evidence for Bangalore, India. Int J Urban Reg Res. 35(6):1284–1301. doi:10.1111/j.1468-2427.2011.01016.x.
  • Nortcliff S. 2002. Standardization of soil quality attributes. Agri Ecosyst Environ. 88(2):161–168. doi:10.1016/S0167-8809(01)00253-5.
  • Pal S, Panwar P, Bhardwaj DR. 2013. Soil quality under forest compared to other land- uses in acid soil of north western Himalaya, India. Ann for Res. 56:187–198.
  • Piper CS. 1966. Soil and Plant Analysis. Australia: University Adelaide.
  • Rangaswamy R. 2010. A text book of Agricultural Statistics. New Delhi: New age International Publisherspp. 1–537.
  • Rezaei SA, Gilkes RJ, Andrews SS. 2006. A minimum data set for assessing soil quality in rangelands. Geoderma. 136(1–2):229–234. doi:10.1016/j.geoderma.2006.03.021.
  • Sanchez JE, Harwood RR, Willson TC, Kizilkaya K, Smeenk J, Parker E, Paul EA, Knezek BD, Robertson GP. 2004. Managing soil carbon and nitrogen for productivity and environmental quality. Agron J. 96(3):769–775. doi:10.2134/agronj2004.0769.
  • Schoenholtz SH, Miegroet V, Burger JA. 2000. A review of chemical and physical properties as indicators of forest soil quality: challenges and properties. For Ecol Manage. 139(1–3):335–356. doi:10.1016/S0378-1127(00)00423-0.
  • Seto KC, Parnell S, Elmqvist T. 2013. A global outlook on urbanisationUrbanisation, Biodiversity and Ecosystem Services: Challenges and Opportunities. In: Elmqvist T, et al, editors. A Global Assessment. doi:10.1007/978-94-007-7088-11
  • Sharma KL 2009. Effect of agro-forestry systems on soil quality –monitoring and assessment. ICAR, CRIDA, 1stb January, 2009, https://core.ac.uk/display/288308485?utm_source=pdf&utm_medium=banner&utm_campaign=pdf-decoration-v1.
  • Sharma V, Shabeer H, Sharma KR, Arya VK. 2014. Labile carbon pools and soil organic carbon stocks in foothill Himalayas under different land use systems. Geoderma. 232-234:81–87. doi:10.1016/j.geoderma.2014.04.039.
  • Singh MJ, Khera KL, Priyabrata S. 2011. Selection of soil physical quality indicators in relation to soil erodibility. Arch Agron Soil Sci. 1–16. doi:10.1080/03650340.2010.537324.
  • Somasundaram J, Singh RK, Parandiyal AK, Prasad SN. 2009. Micronutrient status of soils under different land use systems in chambal ravines. J Indian Soc Soil Sci. 57:307–312.
  • Subbaiah BV, Asija GL. 1956. A rapid procedure for determination of available nitrogen in soil. Curr Sci. 25:259–260.
  • Tiwari KR, Sitaula BK, Borresen T, Bajracharya RM. 2006. An assessment of soil quality in PokhareKhola watershed of the middle mountains in nepal. J Food Agric Environ. 4:276–283.
  • Velasquez E, Lavelle P, Andrade M. 2007. GISQ, a multifunctional indicator of soil quality. Soil Biol Biochem. 39(12):3066–3080. doi:10.1016/j.soilbio.2007.06.013.
  • Vig AC, Gs S, Bahl GS. 2000. Forms of P and efficacy of different soil tests for P extractability in calcareous soils. J Indian Soc Soil Sci. 48:527–532.
  • Wander MM, Drinkwater LE. 2000. Fostering soil stewardship through soil quality assessment. Appl Soil Ecol. 15(1):61–73. doi:10.1016/S0929-1393(00)00072-X.
  • Wienhold BJ, Andrews SS, Kuykendall H, Karlen DL. 2008. Recent advances in soil quality assessment in the United States. J Indian Soc Soil Sci. 56:237–246.
  • Zhang W, Lee SY, Song X. 2002. Local polynomial fitting in semi varying coefficient models. J Multivar Anal. 82(1):166–188. doi:10.1006/jmva.2001.2012.

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