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首页> 外文期刊>Water, Air, and Soil Pollution >Effect of Silene vulgaris and Heavy Metal Pollution on Soil Microbial Diversity in Long-Term Contaminated Soil
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Effect of Silene vulgaris and Heavy Metal Pollution on Soil Microbial Diversity in Long-Term Contaminated Soil

机译:普通硅和重金属污染对长期污染土壤中微生物多样性的影响

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In this study, we analysed the impact of heavy metals and plant rhizodeposition on the structure of indigenous microbial communities in rhizosphere and bulk soil that had been exposed to heavy metals for more than 150 years. Samples of the rhizosphere of Silene vulgaris and non-rhizosphere soils 250 and 450 m from the source of emission that had different metal concentrations were collected for analyses. The results showed that soils were collected 250 m from the smelter had a higher number of Cd-resistant CFU compared with the samples that were collected from 450 m, but no significant differences were observed in the number of total and oligotrophic CFU or the equivalent cell numbers between rhizosphere and non-rhizosphere soils that were taken 250 and 450 m from the emitter. Unweighted pair group method with arithmetic mean (UPGMA) cluster analysis of the denaturing gradient gel electrophoresis (DGGE) profiles, as well as a cluster analysis that was generated on the phospholipid fatty acid (PLFA) profiles, showed that the bacterial community structure of rhizosphere soils depended more on the plant than on the distance and metal concentrations. The sequencing of the 16S rDNA fragments that were excised from the DGGE gel revealed representatives of the phyla Bacteroidetes, Acidobacteria, Gemmatimonadetes, Actinobacteria and Betaproteobacteria in the analysed soil with a predominance of the first three groups. The obtained results demonstrated that the presence of S. vulgaris did not affect the number of CFUs, except for those of Cd-resistant bacteria. However, the presence of S. vulgaris altered the soil bacterial community structure, regardless of the sampling site, which supported the thesis that plants have a higher impact on soil microbial community than metal contamination.
机译:在这项研究中,我们分析了重金属和植物根茎沉积对暴露于重金属超过150年的根际和散装土壤中土著微生物群落结构的影响。收集了来自排放源的具有不同金属浓度的普通硅化土壤和非根际土壤250和450 m的样品进行分析。结果表明,与从450 m采集的样品相比,从冶炼厂250 m采集的土壤具有更高的耐Cd CFU数量,但在总养分和贫营养CFU或等效细胞数量上没有观察到显着差异距发射器250 m和450 m的根际土壤和非根际土壤之间的数量加权梯度凝胶电泳(DGGE)谱的算术平均值(UPGMA)聚类分析和基于磷脂脂肪酸(PLFA)谱的聚类分析的非加权成对组方法表明,根际细菌群落结构土壤比距离和金属浓度更多地取决于植物。从DGGE凝胶中切出的16S rDNA片段的测序表明,在分析的土壤中,前三类占优势,有细菌类,酸性杆菌,芽孢杆菌,放线菌和β变形杆菌的代表。获得的结果表明,除了抗Cd细菌外,寻常葡萄球菌的存在并不影响CFU的数量。然而,无论取样地点如何,寻常葡萄球菌的存在都改变了土壤细菌群落结构,这支持了这样的论点,即植物对土壤微生物群落的影响大于金属污染。

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