Soil microbial activity, mycelial lengths and physiological groups of bacteria in a heavy metal polluted area

Anders Nordgren, Tiiu Kauri, Erland Bååth, Bengt Söderström
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引用次数: 72

Abstract

The biological effects of heavy metal contamination of coniferous forest soils were studied in the A01/A02 layer around a primary smelter in Northern Sweden. Soil concentrations of 17 elements were determined. Smelter-emitted heavy metals were 5 to 75 times higher in the plot closest to the smelter compared with background levels. Despite emission of sulphur no decrease in pH was found.

Bacteria producing acid from maltose, cellobiose, arabinose or xylose and bacteria hydrolysing starch, pectin, xylan or cellulose decreased 8- to 11-fold due to the soil contamination. Chitin hydrolysers were 5 times less abundant at the most polluted site compared with background levels. Soil respiration rate and urease activity decreased by about a factor of 4, but phosphatase activity and mycelial lengths were unaffected by the soil contamination. Soil bacteria showed a sigmoidal response to the log of metal concentration in the soil and were affected at a lower pollution level than the other biological variables in the study.

A multivariate analysis (partial least squares) showed that soil metal contamination and soil pH were the two environmental factors influencing the soil microorganisms.

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重金属污染地区土壤微生物活性、菌丝长度及细菌生理类群
在瑞典北部一家初级冶炼厂附近的A01/A02层研究了重金属污染对针叶林土壤的生物效应。测定了17种元素的土壤浓度。在离冶炼厂最近的地块上,冶炼厂排放的重金属比背景水平高出5至75倍。尽管排放了硫,但没有发现pH值降低。由于土壤污染,从麦芽糖、纤维素二糖、阿拉伯糖或木糖生产酸的细菌和水解淀粉、果胶、木聚糖或纤维素的细菌减少了8- 11倍。在污染最严重的地点,几丁质水解物的丰度比背景水平低5倍。土壤呼吸速率和脲酶活性降低约4倍,但磷酸酶活性和菌丝长度不受土壤污染的影响。土壤细菌对土壤中金属浓度的对数呈s型响应,并且在较低的污染水平下受到影响。多因素分析(偏最小二乘法)表明,土壤金属污染和土壤pH是影响土壤微生物数量的两个环境因子。
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