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Diversity of Arbuscular Mycorrhizal Fungus Populations in Heavy-Metal-Contaminated Soils

机译:重金属污染土壤中丛枝菌根真菌种群的多样性

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摘要

High concentrations of heavy metals have been shown to adversely affect the size, diversity, and activity of microbial populations in soil. The aim of this work was to determine how the diversity of arbuscular mycorrhizal (AM) fungi is affected by the addition of sewage-amended sludge containing heavy metals in a long-term experiment. Due to the reduced number of indigenous AM fungal (AMF) propagules in the experimental soils, several host plants with different life cycles were used to multiply indigenous fungi. Six AMF ecotypes were found in the experimental soils, showing consistent differences with regard to their tolerance to the presence of heavy metals. AMF ecotypes ranged from very sensitive to the presence of metals to relatively tolerant to high rates of heavy metals in soil. Total AMF spore numbers decreased with increasing amounts of heavy metals in the soil. However, species richness and diversity as measured by the Shannon-Wiener index increased in soils receiving intermediate rates of sludge contamination but decreased in soils receiving the highest rate of heavy-metal-contaminated sludge. Relative densities of most AMF species were also significantly influenced by soil treatments. Host plant species exerted a selective influence on AMF population size and diversity. We conclude based on the results of this study that size and diversity of AMF populations were modified in metal-polluted soils, even in those with metal concentrations that were below the upper limits accepted by the European Union for agricultural soils.
机译:研究表明,高浓度的重金属会对土壤中微生物种群的大小,多样性和活性产生不利影响。这项工作的目的是在长期实验中确定添加含重金属的污水污泥后如何影响丛枝菌根(AM)真菌的多样性。由于实验土壤中原生AM真菌(AMF)繁殖体的数量减少,因此使用了几种具有不同生命周期的寄主植物来繁殖原生真菌。在实验土壤中发现了6种AMF生态型,它们对重金属的耐受性表现出一致的差异。 AMF生态型的范围从对金属的敏感性非常高到对土壤中重金属的相对耐受性较高。随着土壤中重金属含量的增加,AMF总孢子数减少。但是,以香农-维纳指数衡量的物种丰富度和多样性在接受中等程度污泥污染的土壤中增加了,但在受到重金属污染的污泥最高比率的土壤中却减少了。土壤处理对大多数AMF物种的相对密度也有显着影响。寄主植物物种对AMF种群的大小和多样性具有选择性的影响。根据本研究的结果,我们得出结论,即使在金属污染的土壤中,金属离子浓度低于欧盟认可的农业土壤上限的土壤中,AMF种群的大小和多样性也会发生变化。

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