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Using microbial community functioning as the complementary environmental condition indicator: a case study of an iron deposit tailing area.

机译:利用微生物群落作为补充环境条件指标:以铁矿尾矿区为例。

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摘要

Various indices of soil microbial community and physiochemical properties at an iron deposit tailing area were investigated to evaluate the use of microbial community behavior as a complemental indicator of soil condition to traditional quality indices. Besides basal respiration rate and microbial carbon, the BIOLOGReg. method was applied to estimate the microbial ability in utilizing different carbon sources. Ordination methods to obtain a biological characterization of sampling sites, and principal response curve methods to reveal the carbon utilizing ability during the whole cultivating process were utilized in this study. The Nemerow composite index, which was used to assess the heavy metal contamination based on six total metal contents, hardly detected the overall discrepancy. However, there were significant differences in microbial functioning parameters at the five sampling plots, which provided more information about the environmental condition. The increases of certain metal contents and pH were accompanied by higher basal respirations (BAS). The increase of BAS did not correspond with the increase of carbon utilization and the higher level of microbial carbon contents. On the whole, these findings indicated that microbes can provide complementary information about different degrees of contamination and can be regarded as a usefully environmental indicator.
机译:研究了铁矿尾矿区土壤微生物群落的各种指标和理化特性,以评估微生物群落行为作为土壤质量对传统质量指标的补充指标。除了基础呼吸频率和微生物碳外,BIOLOGReg。方法被用来估计利用不同碳源的微生物能力。本研究采用排序方法获得采样点的生物学特性,并采用主要响应曲线方法揭示整个培养过程中的碳利用能力。 Nemerow复合指数用于基于六种金属总量评估重金属污染,几乎没有发现总体差异。但是,在五个采样区中,微生物功能参数存在显着差异,这提供了有关环境条件的更多信息。某些金属含量和pH的升高伴随着更高的基础呼吸(BAS)。 BAS的增加与碳利用率的增加和微生物碳含量的升高并不一致。总体而言,这些发现表明微生物可以提供有关不同程度污染的补充信息,并且可以被视为有用的环境指标。

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