Correlation between bacterial abundance, soil properties and heavy metal contamination in the area of non-ferrous metal processing plant, Southern Bulgaria

Q4 Environmental Science
BioRisk Pub Date : 2022-04-21 DOI:10.3897/biorisk.17.77458
Radina Nikolova, Michaella Petkova, N. Dinev, A. Kenarova, S. Boteva, D. Berov, G. Radeva
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引用次数: 3

Abstract

In the present study, the correlation between bacterial abundance and soil physicochemical properties along the heavy metal contamination gradient in the area of non-ferrous metal processing plant was assessed. Our results showed that bacterial abundance (number of heterotrophic bacteria and number of 16S rRNA gene copies) decreased with 45–56% (CFU) and 54–87% (16S rRNA gene) along the Zn, Pb and Cd contamination gradient. The total bacterial abundance (16S rRNA gene) increased exponentially in contrast to the abundance of heterotrophic bacteria. The reduction of bacterial abundance in heavily contaminated soil indicated that the soil properties (soil pH, total organic carbon, inorganic ions, soil texture) could modify the effects of heavy metals and the response of microorganisms to that stress in long-term contaminated soils.
Correlation在保加利亚南部有色金属加工厂区域细菌丰度、土壤性质和重金属污染之间的关系
研究了有色金属加工厂土壤细菌丰度与土壤理化性质在重金属污染梯度上的相关性。结果表明,细菌丰度(异养细菌数量和16S rRNA基因拷贝数)沿Zn、Pb和Cd污染梯度分别下降45-56% (CFU)和54-87% (16S rRNA基因拷贝数)。与异养菌的丰度相比,细菌总丰度(16S rRNA基因)呈指数增长。重度污染土壤中细菌丰度的降低表明,长期污染土壤的土壤性质(pH、总有机碳、无机离子、土壤质地)可能改变重金属的影响和微生物对重金属胁迫的响应。
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来源期刊
BioRisk
BioRisk Environmental Science-Environmental Science (miscellaneous)
CiteScore
1.40
自引率
0.00%
发文量
44
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