Skip to main content
Have a personal or library account? Click to login
Phosphatase activities of spruce stand soils after serpentinite fertilisation in combination with nitrogen, phosphorus and potassium fertilisers Cover

Phosphatase activities of spruce stand soils after serpentinite fertilisation in combination with nitrogen, phosphorus and potassium fertilisers

Open Access
|Dec 2015

References

  1. Attwill P.M., Adams M.A. 1993. Nutrient cycling in forests. New Phytologist, 124, 561-582.
  2. Badalucco L., Grego S., Dell’Orco S., Nannipieri P. 1992. Effect of liming on some chemical, biochemical, and microbiological properties of acid soils under spruce (Picea abies L.). Biology and Fertility of Soils, 14(2), 76-83.
  3. Bielińska E.J. 2005. Ocena stanu środowiska glebowego ogrodów działkowych z terenów o różnym oddziaływaniu antropopresji poprzez badanie aktywności fosfataz. Zeszyty Problemowe Postępów Nauk Rolniczych, 505, 51-58.
  4. Ekenler M., Tabatabai M.A. 2003. Effects of liming and tillage systems on microbial biomass and glycosidases in soils. Biology and Fertility of Soils, 39, 51-61.
  5. Haziev F.H. 1976. Fermentativnaâ aktivnost počv. Izd. Nauka, Moskwa.
  6. Huang W., Liu J., Zhou G., Zhang D., Deng Q. 2011. Effects of precipitation on soil acid phosphatase activity in three successional forests in southern China. Biogeosciences, 8, 1901-1910.
  7. Januszek K., Lasota J., Gruba P., Domicz G. 2001. Właściwości fizyczno-chemiczne i biochemiczne gleb bielicowych 6 lat po pożarze całkowitym lasu. Acta Agraria et Silvestria Series Silvestris, 39, 45-61.
  8. Johnson D., Leake J.R., Read D.J. 2005. Liming and nitrogen fertilization affects phosphatase activities, microbial biomass and mycorrhizal colonistaion in upland grassland. Plant and Soil, 271, 157-164.
  9. Juma N.G., Tabatabai M.A. 1977. Effects of trace elements on phosphase activity in soils. Soil Science Society of America Journal, 41,343-346.
  10. Kandeler E., Kampichler C., Horak O. 1996. Influence of heavy metals on the functional diversity of soil communities. Biology and Fertility of Soils, 23, 299-306.
  11. Kramer M., Yerdei G. 1959. Application of the method of phosphatase activity determination in agricultural chemistry. Soviet Soil Science, 9, 1100-1103.
  12. Kucharski J., Boros E., Wyszkowska J. 2009. Biochemical activity of nickel-contaminated soil. Polish Journal of Environmental Studies, 18(6), 1039-1044.
  13. Kummerova M., Buresova I. 1990. The effect exogenous phosphate deficiency on the activity of acid phosphatase of the root of two maize genotypes. Plant Physiology and Biochemistry, 32 (1). 1-17.
  14. Mijangos I., Pérez R., Albizu I., Garbisu C. 2006. Effects of fertilization and tillage on soil biological paramters. Enzyme and Microbial Technology, 40,100-106.
  15. Nannipieri P., Johanson R.L., Paul E.A. 1978. Criteria for measurement of microbial growth and activity in soil. Soil Biology and Biochemistry, 10, 223-229.
  16. Nannipieri P., Grego S., Ceccanti B. 1990. Ecological significance of the biological activity in soil. Soil Biochemistry, 6, 293-355.
  17. Nannipieri P., Giagnoni L., Landi L., Renella G. 2011. Role of phosphatase enzymes in soil. Soil Biology, 26, 215-243. DOI 10.1007/978-3-642-15271-9_910.1007/978-3-642-15271-9_9
  18. Schneider K., Turrion M.B., Grierson P.F., Gallardo J.F. 2001. Phosphatase activity, microbial phosphorus, and fine root growth in forest soils in the Sierra de Gata, western Spain. Biology and Fertility of Soils, 34,151-155.
  19. Tabatabai M.A., Bremner J.M. 1969. Use of p-nitrophenol phosphate for assay of soil phosphatase activity. Soil Biology and Biochemistry, 1, 301-307.
  20. Wang X.C., Lu Qin. 2006. Beta-glucosidase activity in paddy soils of the Taihu Lake region, China. Pedosphere, 16 (1), 118-124.
  21. Wang Q.K., Wang S.L., Liu X.Y. 2008. Responses to N and P fertilization in a young Eucalyptus dunnii plantation: Microbial properties, enzyme activities and dissolved organic matter. Applied Soil Ecology, 40, 484-490.
  22. Wang J.B., Chen Z.H., Chen L.J., Zhu A.N., Wu Z.J. 2011. Surface soil phosphorus and phosphatase activities affected by tillage and crop residue input amounts. Plant, Soil and Evironment, 57, 251-257.
  23. Zglimbea G.R., Mihaila V. 1996. Influence of nitrogen and phosphorus rates on acid phosphatase activity. Romanian Agricultural Research, 5/6, 59-69.
DOI: https://doi.org/10.1515/ffp-2015-0008 | Journal eISSN: 2199-5907 | Journal ISSN: 0071-6677
Language: English
Page range: 82 - 89
Submitted on: Oct 9, 2014
Accepted on: Mar 10, 2015
Published on: Dec 12, 2015
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2015 Ewa Błońska, Kazimierz Januszek, Tomasz Wanic, Stanisław Małek, published by Forest Research Institute
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.