The Contingency of Soil Microorganisms and the Selected Soil Biotic and Abiotic Parameters Under Different Land-Uses

Author:

Júdová Jana1,Kanianska Radoslava2,JaĎuĎová Jana2,Kizeková Miriam3,Makovníková Jarmila4

Affiliation:

1. Faculty of Industrial Technologies , Trenčín University of A. Dubček , 020 01 Púchov , Slovak Republic

2. Faculty of Natural Science , Matej Bel University , 974 01 Banská Bystrica , Slovak Republic

3. National Agricultural and Food Centre – Grassland and Mountain Agricultural Research Institute , 974 21 Banská Bystrica , Slovak Republic

4. National Agricultural and Food Centre – Soil Science and Conservation Research Institute Bratislava , Regional station Banská Bystrica, 974 04 Banská Bystrica , Slovak Republic

Abstract

Abstract Land use changes are local phenomena with global impact. They have an impact in a cumulative sense on biodiversity or soil degradation. This study aimed to examine the effects of different land-uses (arable land, permanent grasslands, abandoned grasslands, forest land) on the selected biotic and abiotic soil parameters in the Slovak mountain study sites Liptovská Teplička and Tajov. Biotic (microbial community structure, earthworm number and fresh body biomass, arthropod number and fresh body biomass), and abiotic chemical soil parameters (pH, total organic carbon, total nitrogen, nutrients) were measured. According to MALDI-TOF (Matrix Assisted Laser Desorption Ionization-Time of Flight), several bacterial strains were identified. Mutual relations between soil microorganisms and soil biotic and abiotic properties determined by different land uses were analysed. Microbial response expressed as average well-colour development (AWCD) values indicated relations between higher microbial diversity and higher nutrient availability at both study sites. In the comparison of land use types, permanent grasslands (PG) showed the lowest microbial activity in the depth of 0–0.1 m. But in the depth of 0.2-0.3 m in PG of both study sites, the higher microbial activity was recorded compared to the depth of 0-0.1 m. In addition, lower AWCD values in PG were in line with the lower available P and K content but higher earthworm density and biomass.

Publisher

Walter de Gruyter GmbH

Subject

Ecology

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