279
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Impact of Several Levels of Calcium Phosphate Fertilization on Distribution, Partitioning, and Lability of Soil Phosphorus under Corn-Wheat System

, , &
Pages 712-723 | Received 17 Feb 2020, Accepted 14 Dec 2020, Published online: 07 Jan 2021

References

  • Anonymous. 2016. Meteorological yearbook. Ankara, Turkey: Turkish Meteorology Service. https://mgm.gov.tr/eng/forecast-cities.aspx?m.
  • Beck, M. A., and P. A. Sanchez. 1994. Soil phosphorus fraction dynamics during 18 years of cultivation on a Typic Paleudult. Soil Science Society of America Journal 58:1424–31. doi:10.2136/sssaj1994.03615995005800050021x.
  • Blair, S. N., H. Kohl, C. E. Barlow, R. S. Paffenbarger Jr., L. W. Gibbons, and C. A. Macera. 1995. Changes in physical fitness and all-cause mortality: A prospective study of healthy and unhealthy men. Journal of the American Medical Association 273:1093–98. doi:10.1001/jama.1995.03520380029031.
  • Blake, L., S. Mercik, M. Körschens, S. Moskal, P. R. Poulton, K. W. T. Goulding, A. Weigel, and D. S. Powlson. 2003. Phosphorus content in soil, uptake by plants and balance in three European long-term field experiments. Nutrient Cycling in Agroecosystems 56:263–75. doi:10.1023/A:1009841603931.
  • Bowman, R. A., and C. V. Cole. 1978. An exploratory method for fractionation of organic phosphorus from grassland soils. Soil Science 125:95–101. doi:10.1097/00010694-197802000-00006.
  • Ciampitti, I. A., F. O. Garcia, L. I. Picone, and G. Rubio. 2011. Phosphorus budget and soil extractable dynamics in field crop rotations in Mollisols. Soil Science Society of America Journal 75:131–42. doi:10.2136/sssaj2009.0345.
  • Coelho, M. J. A., D. Ruiz-Diaz, M. Rodrigues, F. B. Ono, C. Kappes, L. Zancanaro, and P. S. Pavinato. 2020. Soil phosphorus fate and its lability after a long-term phosphorus fertilizer strategy in Brazilian Oxisol. Archives of Agronomy and Soil Science 14:1–14. doi:10.1080/03650340.2020.1803492.
  • Cross, A., and W. Schlesinger. 1995. A literature review and evaluation of the hedley fractionation: applications to the biogeochemical cycle of soil phosphorus in natural ecosystems. Geoderma 64 (3–4):197–214. doi:10.1016/0016-7061(94)00023-4.
  • Diaz, O. A., S. H. Daroub, J. D. Stuck, M. W. Clark, T. A. Lang, and K. R. Reddy. 2006. Sediment inventory and phosphorus fractions for water conservation area canals in the Everglades. Soil Science Society of America Journal 70:863–71. doi:10.2136/sssaj2005.0059.
  • García, A. R., and A. F. de Iorio. 2003. Phosphorus distribution in sediments of Morales Stream (tributary of the Matanza-Riachuelo River, Argentina): The influence of organic point source contamination. Hydrobiologia 492:129–38. doi:10.1023/A:1024874030418.
  • Gburek, W. J., E. Barberis, P. M. Haygarth, B. Kronvang, and C. Stamm. 2005. Phosphorus mobility in the landscape. In Phosphorus: Agriculture and the environment, ed. J. T. Sims and A. N. Sharpley, 947–53. Madison, Wisconsin: American Society of Agronomy.
  • He, Z., C. Honeycutt, and T. Griffin. 2003. Comparative investigation of sequentially extracted phosphorus fractions in a sandy loam soil and a swine manure. Communications in Soil Science and Plant Analysis 34:1729–42. doi:10.1081/CSS-120021308.
  • He, Z., C. W. Honeycutt, B. J. Cade-Menun, Z. N. Senwo, and I. A. Tazisong. 2008. Phosphorus in poultry litter and soil: Enzymatic and nuclear magnetic resonance characterization. Soil Science Society of America Journal 72 (5):1425–33. doi:10.2136/sssaj2007.0407.
  • Hedley, M. J., J. W. B. Stewart, and B. S. Chauhan. 1982. Changes in inorganic soil phosphorus fractions induced by cultivation practices and by laboratory incubations. Soil Science Society of America Journal 46:970–76. doi:10.2136/sssaj1982.03615995004600050017x.
  • Herlihy, M., and D. McGrath. 2007. Phosphorus fractions and adsorption characteristics in grassland soils of varied soil phosphorus status. Nutrient Cycling in Agroecosystem 77 (1):15–27. doi:10.1007/s10705-006-6687-4.
  • Herrera, W. F. B., M. Rodrigues, A. P. B. Teles, G. Barth, and P. S. Pavinato. 2016. Crop yields and soil phosphorus lability under soluble and humic-complexed phosphate fertilizers. Agronomy Journal 108 (4):1692–702. doi:10.2134/agronj2015.0561.
  • Islam, K. R., and R. R. Weil. 2000. Land use effects on soil quality in a tropical forest ecosystem of Bangladesh. Agriculture, Ecosystems and Environment. 79:9–16.
  • Jalali, M., and S. S. Tabar. 2011. Chemical fractionation of phosphorus in calcareous soils of Hamedan, western Iran under different land use. Journal of Plant Nutrition and Soil Science 174:523–31. doi:10.1002/jpln.201000217.
  • Kumar, V., M. D. A. Bolland, and R. J. Gilkes. 1994. Comparison of the P i, Colwell, Bray 1, Calcium Acetate Lactate (CAL) and Truog soil phosphorus test for predicting growth of oats, barley, triticale and clover in the field in lateritic soils fertilised with superphosphate and rock phosphate. Fertilizer Research 37 (2):115–24. doi:10.1007/BF00748552.
  • Liu, J., C. Q. Han, Y. H. Zhao, J. J. Yang, B. J. Cade-Menun, Y. F. Hu, J. M. Li, H. Liu, P. Sui, Y. Q. Chen, et al. 2020. The chemical nature of soil phosphorus in response to long-term fertilization practices: Implications for sustainable phosphorus management. Journal of Cleaner Production 272:8. doi:10.1016/j.jclepro.2020.123093.
  • McGill, W., and C. Cole. 1981. Comparative aspects of cycling of organic C, N, S and P through soil organic matter. Geoderma 26:267–86. doi:10.1016/0016-7061(81)90024-0.
  • McKenzie, J. A., A. G. Parker, and J. L. Yen. 1992. Polygenic and single gene responses to selection for resistance to diazinon in Lucilia cuprina. Genetics 130:613–20.
  • Murphy, J., and J. P. Riley. 1962. A modified single-solution method for the determination of phosphorus in natural waters. Analytica chimica acta 27:31–36. doi:10.1016/S0003-2670(00)88444-5.
  • Murrmann, R., and M. Peech. 1969. Effect of pH on labile and soluble phosphate in soils. Soil Science Society of America Journal 33:205–10. doi:10.2136/sssaj1969.03615995003300020015x.
  • Negassa, W., and P. Leinweber. 2009. How does the Hedley sequential phosphorus fractionation reflect impacts of land use and management on soil phosphorus: A review. Journal of Plant Nutrition and Soil Science 172:305–25. doi:10.1002/jpln.200800223.
  • Ortas, I., and K. R. Islam. 2018. Phosphorus fertilization impacts on corn yield and soil fertility. Communications in Soil Science and Plant Analysis 49 (14):1684–94. doi:10.1080/00103624.2018.1474906.
  • Ortas, I., and R. Lal. 2012. Long-term phosphorus application impacts on aggregate-associated carbon and nitrogen sequestration in a vertisol in the Mediterranean Turkey. Soil Science 177:241–50. doi:10.1097/SS.0b013e318245d11c.
  • Richardson, C. J., and P. E. Marshall. 1986. Processes controlling movement, storage, and export of phosphorus in a fen peatland. Ecological Monographs 56:279–302. doi:10.2307/1942548.
  • Rocha, J. H. T., M. L. C. Menegale, M. Rodrigues, J. L. D. Goncalves, P. S. Pavinato, E. C. Foltran, R. Harrison, and J. N. James. 2019. Impacts of timber harvest intensity and P fertilizer application on soil P fractions. Forest Ecology and Management 437:295–303. doi:10.1016/j.foreco.2019.01.051.
  • SAS. 2009. SAS/STAT user’s guide. Cary, NC: S. Institute. SAS Inst.
  • Schoenau, J. J., J. W. B. Stewart, and J. R. Bettany. 1989. Forms and cycling of phosphorus in prairie and boreal forest soils. Biogeochem 8:223–37. doi:10.1007/BF00002890.
  • Sheklabadi, M., H. Mahmoudzadeh, A. A. Mahboubi, B. Gharabaghi, and B. Ahrens. 2015. Long-term land-use change effects on phosphorus fractionation in Zrebar Lake margin soils. Archives of Agronomy and Soil Science 61 (6):737–49. doi:10.1080/03650340.2014.954106.
  • Soltangheisi, A., M. Rodrigues, M. J. A. Coelho, A. M. Gasperini, L. R. Sartor, and P. S. Pavinato. 2018. Changes in soil phosphorus lability promoted by phosphate sources and cover crops. Soil & Tillage Research 179:20–28. doi:10.1016/j.still.2018.01.006.
  • Sonzongni, W. C., S. C. Chapra, D. E. Armstrong, and T. J. Logan. 1982. Phosphate chemistry in lake sediments. Journal of Environmental Quality 11:555–63. doi:10.2134/jeq1982.114555x.
  • Takahashi, S., and M. R. Anwar. 2007. Wheat grain yield, phosphorus uptake and soil phosphorus fraction after 23 years of annual fertilizer application to an Andosol. Field Crops Research 101:160–71. doi:10.1016/j.fcr.2006.11.003.
  • Tiessen, H., I H Salcedo, and E. V. S. B. Sampaio. 1992. Nutrient and soil organic matter dynamics under shifting cultivation in semi-arid Northeastern Brazil. Agriculture, Ecosystems & Environment 39:139–51. doi:10.1016/0167-8809(92)90139-3.
  • Tiessen, H., J. W. B. Stweart, and C. V. Cole. 1984. Pathways of phosphorus transformations in soils of differing pedogenesis. Soil Science Society of America Journal 48:853–58. doi:10.2136/sssaj1984.03615995004800040031x.
  • Verma, S., S. K. Subehia, and S. P. Sharma. 2005. Phosphorus fractions in an acid soil continuously fertilized with mineral and organic fertilizers. Biology and Fertility of Soils 41:295–300. doi:10.1007/s00374-004-0810-y.
  • Vu, D. T., C. Tang, and R. D. Armstrong. 2008. Changes and availability of P fractions following 65 years of P application in a calcareous soil in a Mediterranean region. Plant and Soil 304:21–33. doi:10.1007/s11104-007-9516-x.
  • Wang, C., Y. Zhang, H. Li, and R. J. Morrison. 2013. Sequential extraction procedures for the determination of phosphorus forms in sediment. Limnology 14 (2):147–57. doi:10.1007/s10201-012-0397-1.
  • Wuenscher, R., H. Unterfrauner, R. Peticzka, and F. Zehetner. 2015. A comparison of 14 soil phosphorus extraction methods applied to 50 agricultural soils from Central Europe. Plant, Soil and Environment 61 (2):86–96. doi:10.17221/932/2014-PSE.
  • Yi-Chao, S. H. I., N. Ziadi, A. J. Messiga, R. Lalande, and H. U. Zheng-Yi. 2015. Soil phosphorus fractions change in winter in a corn-soybean rotation with tillage and phosphorus fertilization. Pedosphere 25 (1):1–11. doi:10.1016/S1002-0160(14)60071-0.
  • Zamuner, E., and J. P. Culot. 1999. Effect of fertilizers on phosphorus sorption capacity. Investigacion-Agraria- Production-y-Proteccion-Vegetales 14 (1–2):107–16.
  • Zamuner, E. C., L. I. Picone, and H. E. Echeverria. 2008. Organic and inorganic phosphorus in Mollisol soil under different tillage practices. Soil and Tillage Research 99:131–38. doi:10.1016/j.still.2007.12.006.
  • Zhang, T. Q., Z. M. Zheng, C. F. Drury, Q. C. Hu, and C. S. Tan. 2020. Legacy phosphorus after 45 years with consistent cropping systems and fertilization compared to native soils. Frontiers in Earth Science 8:11. doi:10.3389/feart.2020.00183.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.