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Microbiological transformations of phosphorus and sulphur compounds in acid soils

Authors :
Stamenov Dragana
Jarak Mirjana
Đurić Simonida
Jafari Hajnal Timea
Bjelić Dragana
Source :
Zbornik Matice Srpske za Prirodne Nauke, Vol 2012, Iss 123, Pp 27-36 (2012)
Publication Year :
2012
Publisher :
Matica srpska, 2012.

Abstract

The dynamics of phosphorus and sulphur in soil is closely related to the dynamics of the biological cycle in which microorganisms play a central role. There is not much microbiological activity in acid soils because aerobes are scarce, rhizosphere is restricted to the shallow surface layer, and the biomass of microorganisms decreases with higher acidity. The aim of the research was to investigate the number of microorganisms, which decompose organic and inorganic phosphorus compounds and organic sulphur compounds in calcocambisol, luvisol, and pseudogley. The following parameters were determined in the soil samples: pH in H2O and in 1MKCl; the content of CaCO3 (%); humus content (%), nitrogen content (%); the content of physiologically active phosphorus and potassium (mg P2O5/100g of soil; mg K2O/100g of soil). The number of microorganisms was determined by the method of agar plates on appropriate nutrient media: the number of microorganisms solubilizing phosphates on a medium by Muramcov; the number of microorganisms that decompose organic phosphorus compounds on a medium with lecithin; and the number of microorganisms that transform organic sulphur compounds on a medium by Baar. All three types of soil are acid non-carbonate soils with a low level of available phosphorus and a more favorable amount of potassium, nitrogen, and humus. The largest number of bacteria, which transform organic phosphorus compounds, was found in calcocambisol. The largest number of phosphate solubilizing bacteria was recorded in pseudogley, whereas the largest number of phosphate solubilizing fungi was recorded in calcocambisol. The largest number of bacteria, which transform organic sulphur compounds, was recorded in pseudogley.

Details

Language :
English
ISSN :
03524906
Volume :
2012
Issue :
123
Database :
Directory of Open Access Journals
Journal :
Zbornik Matice Srpske za Prirodne Nauke
Publication Type :
Academic Journal
Accession number :
edsdoj.995127213ce8480987d8d4852b695b80
Document Type :
article
Full Text :
https://doi.org/10.2298/ZMSPN1223027S