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DNA- and RNA-derived assessments of fungal community composition in soil amended with sewage sludge rich in cadmium, copper and zinc

机译:富含镉,铜和锌的污水污泥修正的土壤中真菌群落组成的DNA和RNA评估

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Current UK legislation permits the application of sewage sludge to agricultural land provided concentrations of heavy metals in soil do not increase above maximum permissible limits. However, even within the defined limits, we do not know how an increase in soil heavy metal concentrations is likely to affect biological diversity and activity. Here we report on the effects of sewage sludge addition, including sludge rich in the metals cadmium, copper and zinc, on soil fungal community composition using both an rDNA and rRNA DGGE approach. Sewage sludge addition altered fungal ITS-DGGE banding patterns, however, there were no additional effects of an increase in soil heavy metal concentrations. Similar results were obtained for the full range of copper rich sludge treatments even when copper concentrations were well above the maximum permissible limits. Our data therefore demonstrate that although an increase in soil organic matter content alters soil fungal community diversity and composition, increasing soil concentrations of cadmium, copper and zinc up to current legislative limits had little additional effect regardless of whether rRNA or rDNA was analysed. This suggests that current UK limits for these three heavy metals are within a concentration range that the dominant soil fungi at this field site can tolerate.
机译:英国现行法律允许将污泥应用于农田,前提是土壤中重金属的含量不超过最大允许限值。但是,即使在规定的范围内,我们也不知道土壤重金属浓度的增加如何可能影响生物多样性和活性。在这里,我们使用rDNA和rRNA DGGE方法报告了添加污泥(包括富含金属镉,铜和锌的污泥)对土壤真菌群落组成的影响。污水污泥的添加改变了真菌ITS-DGGE的带状分布,但是,土壤重金属浓度的增加没有其他影响。即使在铜浓度远高于最大允许限值的情况下,全范围的富铜污泥处理也获得了相似的结果。因此,我们的数据表明,尽管土壤有机质含量的增加改变了土壤真菌群落的多样性和组成,但无论是否分析了rRNA或rDNA,将土壤中镉,铜和锌的浓度提高到目前的立法水平几乎没有任何其他作用。这表明英国目前对这三种重金属的限量都在该田间主要土壤真菌可以忍受的浓度范围内。

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