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Comparative assessment of autochthonous bacterial and fungal communities and microbial biomarkers of polluted agricultural soils of the Terra dei Fuochi

机译:Terra dei Fuochi被污染的农业土壤的自生细菌和真菌群落以及微生物标志物的比较评估

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摘要

Organic and inorganic xenobiotic compounds can affect the potential ecological function of the soil, altering its biodiversity. Therefore, the response of microbial communities to environmental pollution is a critical issue in soil ecology. Here, a high-throughput sequencing approach was used to investigate the indigenous bacterial and fungal community structure as well as the impact of pollutants on their diversity and richness in contaminated and noncontaminated soils of a National Interest Priority Site of Campania Region (Italy) called “Terra dei Fuochi”. The microbial populations shifted in the polluted soils via their mechanism of adaptation to contamination, establishing a new balance among prokaryotic and eukaryotic populations. Statistical analyses showed that the indigenous microbial communities were most strongly affected by contamination rather than by site of origin. Overabundant taxa and Actinobacteria were identified as sensitive biomarkers for assessing soil pollution and could provide general information on the health of the environment. This study has important implications for microbial ecology in contaminated environments, increasing our knowledge of the capacity of natural ecosystems to develop microbiota adapted to polluted soil in sites with high agricultural potential and providing a possible approach for modeling pollution indicators for bioremediation purposes.
机译:有机和无机异源生物化合物会影响土壤的潜在生态功能,从而改变其生物多样性。因此,微生物群落对环境污染的响应是土壤生态学中的关键问题。在这里,采用了一种高通量测序方法,调查了坎帕尼亚地区(意大利)国家利益优先站点中被污染和未被污染的土壤中土著细菌和真菌的群落结构,以及污染物对其多样性和丰富性的影响。 Terra dei Fuochi”。微生物种群通过其对污染的适应机制而在受污染的土壤中转移,从而在原核和真核生物种群之间建立了新的平衡。统计分析表明,土著微生物群落受污染的影响最大,而不是受原产地的影响最大。过多的分类单元和放线菌被认为是评估土壤污染的敏感生物标志物,可提供有关环境健康的一般信息。这项研究对受污染环境中的微生物生态学具有重要意义,它增加了我们对自然生态系统开发具有高农业潜力的土壤中适应污染土壤的微生物群的能力的了解,并为为生物修复目的建模污染指标提供了一种可能的方法。

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