首页> 外文期刊>Microbial Ecology: An International Journal >Soil Properties and Multi-Pollution Affect Taxonomic and Functional Bacterial Diversity in a Range of French Soils Displaying an Anthropisation Gradient
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Soil Properties and Multi-Pollution Affect Taxonomic and Functional Bacterial Diversity in a Range of French Soils Displaying an Anthropisation Gradient

机译:土壤性质和多污染影响了一系列法国土壤中的分类和功能细菌多样性,呈现了呈现人为梯度

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The intensive industrial activities of the twentieth century have left behind highly contaminated wasteland soils. It is well known that soil parameters and the presence of pollutants shape microbial communities. But in such industrial waste sites, the soil multi-contamination with organic (polycyclic aromatic hydrocarbons, PAH) and metallic (Zn, Pb, Cd) pollutants and long-term exposure may induce a selection pressure on microbial communities that may modify soil functioning. The aim of our study was to evaluate the impact of long-term multi-contamination and soil characteristics on bacterial taxonomic and functional diversity as related to the carbon cycle. We worked on 10 soils from northeast of France distributed into three groups (low anthropised controls, slag heaps, and settling ponds) based on their physico-chemical properties (texture, C, N) and pollution level. We assessed bacterial taxonomic diversity by 16S rDNA Illumina sequencing, and functional diversity using Biolog (R) and MicroResp microtiter plate tools. Although taxonomic diversity at the phylum level was not different among the soil groups, many operational taxonomic units were influenced by metal or PAH pollution, and by soil texture and total nitrogen content. Functional diversity was not influenced by PAH contamination while metal pollution selected microbial communities with reduced metabolic functional diversity but more tolerant to zinc. Limited microbial utilisation of carbon substrates in metal-polluted soils was mainly due to the nitrogen content. Based on these two observations, we hypothesised that reduced microbial activity and lower carbon cycle-related functional diversity may have contributed to the accumulation of organic matter in the soils that exhibited the highest levels of metal pollution.
机译:二十世纪的强化工业活动留下了高度受污染的荒地土壤。众所周知,土壤参数和污染物的存在形状微生物群落。但在这种工业废物场所,土壤多污染有机(多环芳烃,PAH)和金属(Zn,Pb,CD)污染物和长期暴露可能会对可以改变土壤功能的微生物群落产生的选择压力。我们的研究目的是评估长期多污染和土壤特征对与碳循环相关的细菌分类和功能多样性的影响。根据其物理化学物质(纹理,C,N)和污染水平,我们在法国东北部的10个土壤上致力于来自法国东北部分为三组(低人际控制,渣堆和沉淀池)。我们通过Biolog(R)和MicroResp Microtiter板工具评估了16S rdna Illumina测序的细菌分类分类,以及功能多样性。虽然土壤群体中的分类学分类在门群水平上没有差异,但许多运作的分类单位受金属或PAH污染的影响,并通过土壤质地和总氮含量影响。功能多样性不受PAH污染的影响,而金属污染选择微生物群落降低代谢功能多样性,但对锌具有更高的耐受性。金属污染土壤中碳基材的有限微生物利用主要是由于氮含量。基于这两种观察,我们假设减少的微生物活性和较低的碳循环相关的功能多样性可能导致土壤中有机物质的积累作出贡献,该污染最高水平的土壤。

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