Literature DB >> 26578378

Effects of long-term radionuclide and heavy metal contamination on the activity of microbial communities, inhabiting uranium mining impacted soils.

Silvena Boteva1, Galina Radeva2, Ivan Traykov1, Anelia Kenarova3.   

Abstract

Ore mining and processing have greatly altered ecosystems, often limiting their capacity to provide ecosystem services critical to our survival. The soil environments of two abandoned uranium mines were chosen to analyze the effects of long-term uranium and heavy metal contamination on soil microbial communities using dehydrogenase and phosphatase activities as indicators of metal stress. The levels of soil contamination were low, ranging from 'precaution' to 'moderate', calculated as Nemerow index. Multivariate analyses of enzyme activities revealed the following: (i) spatial pattern of microbial endpoints where the more contaminated soils had higher dehydrogenase and phosphatase activities, (ii) biological grouping of soils depended on both the level of soil contamination and management practice, (iii) significant correlations between both dehydrogenase and alkaline phosphatase activities and soil organic matter and metals (Cd, Co, Cr, and Zn, but not U), and (iv) multiple relationships between the alkaline than the acid phosphatase and the environmental factors. The results showed an evidence of microbial tolerance and adaptation to the soil contamination established during the long-term metal exposure and the key role of soil organic matter in maintaining high microbial enzyme activities and mitigating the metal toxicity. Additionally, the results suggested that the soil microbial communities are able to reduce the metal stress by intensive phosphatase synthesis, benefiting a passive environmental remediation and provision of vital ecosystem services.

Entities:  

Keywords:  Dehydrogenase; Phosphatase; Soil contamination; Soil organic matter; Uranium and heavy metals

Mesh:

Substances:

Year:  2015        PMID: 26578378     DOI: 10.1007/s11356-015-5788-5

Source DB:  PubMed          Journal:  Environ Sci Pollut Res Int        ISSN: 0944-1344            Impact factor:   4.223


  13 in total

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6.  Introduction of a plasmid-encoded phoA gene for constitutive overproduction of alkaline phosphatase in three subsurface Pseudomonas isolates.

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7.  Biomineralization of uranium by PhoY phosphatase activity aids cell survival in Caulobacter crescentus.

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8.  Effects of Cd and Pb on soil microbial community structure and activities.

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Journal:  Environ Sci Pollut Res Int       Date:  2009-03-31       Impact factor: 4.223

9.  Contribution for the derivation of a soil screening value (SSV) for uranium, using a natural reference soil.

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1.  Bacterial community profile of contaminated soils in a typical antimony mining site.

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2.  Soil microbial community structure and functionality changes in response to long-term metal and radionuclide pollution.

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