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首页> 外文期刊>Environmental Science and Pollution Research >Biological activity in metal-contaminated calcareous agricultural soils: the role of the organic matter composition and the particle size distribution
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Biological activity in metal-contaminated calcareous agricultural soils: the role of the organic matter composition and the particle size distribution

机译:金属污染的石灰质农业土壤中的生物活性:有机物质组成和粒径分布的作用

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Organic matter (OM) plays a key role in microbial response to soil metal contamination, yet little is known about how the composition of the OM affects this response in Mediterranean calcareous agricultural soils. A set of Mediterranean soils, with different contents and compositions of OM and carbonate and fine mineral fractions, was spiked with a mixture of Cd, Cu, Pb, and Zn and incubated for 12 months for aging. Microbial (Biolog Ecoplates) and enzyme activities (dehydrogenase, DHA; β-galactosidase, BGAL; phosphatase, PHOS; and urease, URE) were assessed and related to metal availability and soil physicochemical parameters. All enzyme activities decreased significantly with metal contamination: 36-68 % (DHA), 24-85 % (BGAL), 22-72 % (PHOS), and 14-84 % (URE) inhibitions. Similarly, catabolic activity was negatively affected, especially phenol catabolism (~86 % compared to25-55 % inhibition for the rest of the substrates). Catabolic and DHA activities were negatively correlated with ethylenedi-aminetetraacetic acid (EDTA)-extractable Cd and Pb, but positively with CaCl_2, NaNO_3, and DTPA-extractable Cu and Zn. Soluble OM (water- and hot-water-soluble organic C) was positively related to enzyme and catabolic activities. Recalcitrant OM and fine mineral fractions were positively related to BGAL and PHOS. Conversely, catabolic activity was negatively related to clay and positively to silt and labile OM. Results indicate that the microbial response to metal contamination is highly affected by texture and OM composition.
机译:有机物(OM)在微生物对土壤金属污染的响应中起着关键作用,但对于地中海钙质农业土壤中OM的组成如何影响这种响应的了解甚少。在一组地中海土壤中,分别添加不同量的有机物,碳酸盐和细小矿物成分,并掺入镉,铜,铅和锌的混合物,并保温12个月以老化。评估了微生物(Biolog Ecoplates)和酶活性(脱氢酶,DHA;β-半乳糖苷酶,BGAL;磷酸酶,PHOS;脲酶,URE),它们与金属的有效性和土壤理化参数有关。随着金属污染,所有酶的活性均显着下降:36-68%(DHA),24-85%(BGAL),22-72%(PHOS)和14-84%(URE)抑制。同样,分解代谢活性受到不利影响,尤其是苯酚分解代谢(〜86%,而其余底物的抑制率为25-55%)。分解代谢和DHA活性与乙二胺四乙酸(EDTA)可萃取的Cd和Pb呈负相关,而与CaCl_2,NaNO_3和DTPA可萃取的Cu和Zn呈正相关。可溶性OM(水溶性和热水可溶性有机碳)与酶和分解代谢活性呈正相关。顽固性OM和细矿物质含量与BGAL和PHOS呈正相关。相反,分解代谢活性与粘土呈负相关,与淤泥和不稳定的OM呈正相关。结果表明,微生物对金属污染的反应受质地和OM组成的影响很大。

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