Metal Contamination Disturbs Biochemical and Microbial Properties of Calcareous Agricultural Soils of the Mediterranean Area

被引:22
作者
de Santiago-Martin, Ana [1 ]
Cheviron, Natalie [2 ]
Quintana, Jose R. [1 ]
Gonzalez, Concepcion [1 ]
Lafuente, Antonio L. [1 ]
Mougin, Christian [2 ]
机构
[1] Univ Complutense Madrid, Fac Farm, Dept Edafol, E-28040 Madrid, Spain
[2] INRA, UR PESSAC 251, F-78026 Versailles, France
关键词
16S RIBOSOMAL-RNA; HEAVY-METALS; ENZYME-ACTIVITIES; PHOSPHATASE-ACTIVITIES; ENVIRONMENTAL-SAMPLES; MOLECULAR-WEIGHT; PCR PRIMERS; COPPER; UREASE; BACTERIAL;
D O I
10.1007/s00244-012-9842-8
中图分类号
X [环境科学、安全科学];
学科分类号
083001 [环境科学];
摘要
Mediterranean climate characteristics and carbonate are key factors governing soil heavy-metal accumulation, and low organic matter (OM) content could limit the ability of microbial populations to cope with resulting stress. We studied the effects of metal contamination on a combination of biological parameters in soils having these characteristics. With this aim, soils were spiked with a mixture of cadmium, copper, lead, and zinc, at the two limit values proposed by current European legislation, and incubated for a parts per thousand currency sign12 months. Then we measured biochemical (phosphatase, urease, beta-galactosidase, arylsulfatase, and dehydrogenase activities) and microbial (fungal and bacterial DNA concentration by quantitative polymerase chain reaction) parameters. All of the enzyme activities were strongly affected by metal contamination and showed the following inhibition sequence: phosphatase (30-64 %) < arylsulfatase (38-97 %) a parts per thousand currency sign urease (1-100 %) a parts per thousand currency sign beta-galactosidase (30-100 %) < dehydrogenase (69-100 %). The high variability among soils was attributed to the different proportion of fine mineral fraction, OM, crystalline iron oxides, and divalent cations in soil solution. The decrease of fungal DNA concentration in metal-spiked soils was negligible, whereas the decrease of bacterial DNA was 1-54 % at the lowest level and 2-69 % at the highest level of contamination. The lowest bacterial DNA decrease occurred in soils with the highest OM, clay, and carbonate contents. Finally, regarding the strong inhibition of the biological parameters measured and the alteration of the fungal/bacterial DNA ratio, we provide strong evidence that disturbance on the system, even within the limiting values of contamination proposed by the current European Directive, could alter key soil processes. These limiting values should be established according to soil characteristics and/or revised when contamination is produced by a mixture of heavy metals.
引用
收藏
页码:388 / 398
页数:11
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