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Metabolic Responses of Eisenia Fetida to Individual Pb and Cd Contamination in Two Types of Soils

机译:两种植物土壤中赤子香对不同铅和镉污染的代谢反应

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摘要

To characterize the potential toxicity of low Pb- and Cd-contaminated arable soils, earthworms were exposed to Pb contaminated ferrosol, cambosol or Cd contaminated ferrosol for two weeks. Polar metabolites of earthworms were detected by nuclear magnetic resonance. Data were then analyzed with principal component analysis followed by orthogonal signal correction-partial least squares-discriminant analysis and univariate analysis to determine possible mechanisms for the changes in metabolites. The survival rates, metal concentrations and bioaccumulation factor (BAF) of the earthworms were also measured and calculated as auxiliary data. The results showed that the metabolite profiles were highly similar in Pb-contaminated ferrosol and cambosol (R2 = 0.76, p < 0.0001), which can be attributed to similar response mechanisms. However, there was a more intense response in ferrosol likely due to higher Pb concentrations in earthworms. Metabolic pathways and BAFs exhibited apparent distinctions between Pb- and Cd-contaminated ferrosol, likely because they bind to different bio-ligands. The affected metabolic pathways were involved in alanine-aspartate-glutamate, purine, glutathione, valine-leucine-isoleucine biosynthesis and degradation and nicotinate and nicotinamide metabolism. Regarding the bioavailability in earthworms, Pb availability was higher for ferrosol than for cambosol. We confirmed that the potential toxicity of low Pb/Cd-contaminated soils can be characterized using earthworm metabolomics.
机译:为了表征低Pb和Cd污染的耕地的潜在毒性,将were暴露于Pb污染的铁氧体,坎博索尔或Cd污染的铁氧体中两周。通过核磁共振检测earth的极性代谢产物。然后用主成分分析,正交信号校正-偏最小二乘判别分析和单变量分析对数据进行分析,以确定代谢物变化的可能机理。还测量了的存活率,金属浓度和生物蓄积因子(BAF),并将其计算为辅助数据。结果表明,Pb污染的铁氧体和Cambosol的代谢物特征高度相似(R 2 = 0.76,p <0.0001),这可归因于相似的响应机制。但是,由于earth中较高的Pb浓度,铁氧体的响应更为强烈。代谢途径和BAF在受Pb和Cd污染的铁氧体之间表现出明显的区别,可能是因为它们与不同的生物配体结合。受影响的代谢途径涉及丙氨酸-天冬氨酸-谷氨酸,嘌呤,谷胱甘肽,缬氨酸-亮氨酸-异亮氨酸的生物合成和降解以及烟酸酯和烟酰胺的代谢。关于worm的生物利用度,铁氧体的铅可用性比康宝土的更高。我们证实,using代谢组学可以表征低铅/镉污染的土壤的潜在毒性。

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