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Effect of an Equal Dose of Polymetallic Pollution on the Microbiological Characteristics of Two Soils with Different Organic Carbon Contents

机译:相等剂量的多种污染对不同有机碳含量的两种土壤微生物学特征的影响

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Reliable stable indicators are very important for assessing soil quality. This paper compares the dynamics of microbial parameters in two different soils (rich/poor in organic carbon), contaminated in laboratory experiments with an equal dose of heavy metals (HMs) after 30 and 90 days. For this purpose, the changes in the number, biomass, and taxonomic structure of bacterial and fungal communities were assessed in microcosm experiments using an organic carbon-rich ordinary chernozem (Ch-humus-rich soil) and a depleted carbon agrozem (Ag-humus-poor soil), spiked with high concentrations of a zinc, lead, and copper solution (1100 Zn+660 Cu+650 Pb mg per kg soil). At the 30th and 90th day from HM contamination, soil samples were collected for analyzing microbial community lipid markers by gas chromatography-mass spectrometry. The results show how both biomass and taxonomic structure of the bacterial and fungal communities analyzed were differently sensitive to HM contamination, depending on the type of soil. The Ag-humus-poor soil microbial community was significantly affected by the HM pollution with an increase in both fungi and bacteria and inside the latter several species changed their percentages. Differently, the Ch-humus-rich soil microbial community was not influenced by the HM addition. However, the negative impact of HM can manifest itself over time, so the microbial structure and its functioning cannot represent accurate indicators of the quality of all soil types. The results show that microbial characteristics should be taken into account only in a comprehensive assessment of soil quality in accordance with ISO 19,204:2017-soil quality TRIAD approach. This approach to environmental risk assessment combines biological data (from bioassay and ecological observations) with chemical analysis.
机译:可靠的稳定指标对于评估土壤质量非常重要。本文比较了两种不同土壤中微生物参数的动态(有机碳中的富含/贫困),在30至90天后在实验室实验中污染了具有相等剂量的重金属(HMS)。为此目的,使用有机碳富含普通切屑(CH-HUMUS的土壤)和耗尽的碳农业(Ag-Humus - 覆盖土壤),掺入高浓度的锌,铅和铜溶液(1100 Zn + 660 Cu + 650pb mg / kg土壤)。在HM污染的第30天和第90天,收集土壤样品通过气相色谱 - 质谱法分析微生物群落脂质标志物。结果表明,分析的细菌和真菌社区的生物质和分类结构是如何对HM污染的不同程度敏感,具体取决于土壤的类型。 AG-HUMUS - 贫困土壤微生物群体受到HM污染的显着影响,随着真菌和细菌的增加,后者几种物种改变了百分比。不同,富含Ch-Humus的土壤微生物群落不受HM添加的影响。然而,HM的负面影响可以随时间表现出来,因此微生物结构及其功能不能代表所有土壤类型的质量的准确指标。结果表明,应根据ISO 19,204:2017 - 土壤质量三联方法综合评估土壤质量的综合评估。这种环境风险评估方法将生物数据(来自生物测定和生态观察)与化学分析相结合。

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