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Assessment of bacterial community structure in a long-term copper-polluted ex-vineyard soil

机译:长期污染铜的前葡萄园土壤中细菌群落结构的评估

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The influence of long-term copper contamination on the diversity of bacterial communities was investigated in an ex-vineyard soil. Two sites of the same area but exhibiting different 3-fold exchangeable copper (Ex-Cu) concentrations were analysed. Culturable bacterial community structure was assessed using a variety of approaches: determination of culturable bacteria number, analyses of 132 isolates, and denaturing gradient gel electrophoresis (DGGE) patterns of bacterial biomass grown on agar plates and of soil DNA. There was no significant difference in the number of total heterotrophs at the two sites, whereas the percentage of fast-growing bacteria growing in 1 day, was lower at the site with the higher Ex-Cu content. A high percentage of Cu-tolerant bacteria was found in both sites (63-70%) and it was relatively independent of the Cu content. Shifts in species composition of the culturable bacterial community were detected by analysing isolates from the two soils, Gram-positive bacteria prevailed in the less-polluted soil while Gram-negative bacteria in the more-polluted soil. Each sample site had a community with a different metal resistance pattern. Our study seems to indicate that in this soil ecosystem, copper influenced the culturable bacterial communities, affecting the structural diversity and altering some of the metal resistance of the microorganisms. The Sorensen similarity index calculated on DGGE profiles of 16S rDNA of total and culturable bacterial communities indicated a different species composition at the two sites, although both sites had the same biodiversity degree and different dominance.
机译:在前葡萄园土壤中研究了长期铜污染对细菌群落多样性的影响。分析了两个相同面积但显示不同3倍可交换铜(Ex-Cu)浓度的位点。可采用多种方法评估可培养细菌的群落结构:确定可培养细菌的数量,分析132种分离菌以及在琼脂平板上生长的细菌生物量和土壤DNA的变性梯度凝胶电泳(DGGE)模式。在两个部位的总异养菌数量没有显着差异,而在1天中快速生长的细菌百分数在具有较高Ex-Cu含量的部位较低。在两个部位都发现高百分比的耐铜细菌(63-70%),并且它与铜含量相对独立。通过分析两种土壤中的分离物,可培养细菌群落的物种组成发生变化,革兰氏阳性菌在污染较轻的土壤中占主导,革兰氏阴性菌在污染较重的土壤中占主导。每个样本站点都有一个具有不同金属电阻模式的社区。我们的研究似乎表明,在这种土壤生态系统中,铜影响了可培养的细菌群落,影响了结构多样性并改变了微生物的某些金属抗性。尽管两个站点具有相同的生物多样性程度和优势地位,但根据两个站点的总细菌群落和可培养细菌群落的16S rDNA的DGGE谱计算的Sorensen相似性指数显示出不同的物种组成。

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