Title of article :
Impact of sources of environmental degradation on microbial community dynamics in non-polluted and metal-polluted soils Original Research Article
Author/Authors :
Lur Epelde، نويسنده , , Iker Mart?n-S?nchez، نويسنده , , José A. Gonz?lez-Oreja، نويسنده , , Mikel Anza، نويسنده , , Mar?a T. G?mez-Sagasti، نويسنده , , Carlos Garbisu، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2012
Pages :
9
From page :
264
To page :
272
Abstract :
Soils are currently being degraded at an alarming rate due to increasing pressure from different sources of environmental degradation. Consequently, we carried out a 4-month microcosm experiment to measure the impact of different sources of environmental degradation (biodiversity loss, nitrogen deposition and climate change) on soil health in a non-polluted (non-degraded) and a heavily metal-polluted (degraded) soil, and to compare their responses. To this aim, we determined a variety of soil microbial properties with potential as bioindicators of soil health: basal respiration; β-glucosaminidase and protease activities; abundance (Q-PCR) of bacterial, fungal and chitinase genes; richness (PCR-DGGE) of fungal and chitinase genes. Non-polluted and metal-polluted soils showed different response microbial dynamics when subjected to sources of environmental degradation. The non-polluted soil appeared resilient to “biodiversity loss” and “climate change” treatments. The metal-polluted soil was probably already too severely affected by the presence of high levels of toxic metals to respond to other sources of stress. Our data together suggests that soil microbial activity and biomass parameters are more sensitive to the applied sources of environmental degradation, showing immediate responses of greater magnitude, while soil microbial diversity parameters do not show such variations.
Keywords :
Biodiversity loss , Climate change , Nitrogen deposition , Resilience , resistance
Journal title :
Science of the Total Environment
Serial Year :
2012
Journal title :
Science of the Total Environment
Record number :
988155
Link To Document :
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