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Antioxidant enzyme activities of Folsomia candida and avoidance of soil metal contamination

机译:<重点型=“斜体”>叶片念珠菌的抗氧化酶活性避免土壤金属污染

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Abstract Induction of the antioxidant enzymes catalase (CAT), peroxidase (POD) and superoxide dismutase (SOD) and the avoidance of potentially toxic metals in soil by Folsomia candida were investigated. Both laboratory-spiked and field-polluted agricultural soils were used. Cadmium (Cd) concentrations in body tissues, animal avoidance behaviour and physico-chemical properties of the field soils were also determined. In laboratory Cd-spiked soils, the CAT and SOD activities in the Cd treatments were 71.1–94.7 and 1.31–4.55 times higher than in the control, respectively. In field-polluted agricultural soils, the CAT and POD activities generally increased with increasing pollution index ( PI ~( Nemerow )) of soil Cd, Cu, Pb and Zn. The CAT, POD and SOD activities at different PI ~( Nemerow )were 65.7–128, 30.1–180 and 36.5–95.8% higher than in the control, respectively. In line with the enzyme activities, Cd concentrations in the animal bodies were 8.31–15.1 and 3.21–10.0 times higher than in the control in spiked and field-polluted soils, respectively. Avoidance behaviour also increased with increasing metal concentrations in both soils. The effects of metals on CAT, POD or SOD activity were influenced by soil properties such as soil texture and pH. These results indicate that the antioxidant enzymes activities of F. candida can be induced by heavy metals and potentially used to assess the toxicity, and also that soil properties must be considered in the analysis of enzyme activities in different types of field soils.
机译:摘要研究了抗氧化酶过氧化氢酶(猫),过氧化物酶(POD)和超氧化物歧化酶(SOD)的诱导,并避免了Foolsomia念珠菌在土壤中避免潜在的毒性金属。使用实验室尖刺和污染的农业土壤。还测定了身体组织中镉(CD)浓度,动物避免行为和田间土壤的物理化学性质。在实验室CD尖刺的土壤中,CD处理中的猫和SOD活性分别比对照均高出71.1-94.7和1.31-4.55倍。在字段污染农业土壤中,CAT和POD活性一般与土壤镉,铜,铅和锌的增加的污染指数(PI〜(内梅罗))增加。不同pi〜(nemerow)的猫,豆荚和sod活动分别比对照的65.7-128,30.1-180和36.5-95.8%。根据酶活性,动物体中的Cd浓度分别为8.31-15.1,分别高出3.21-10.0倍,分别高于尖刺和现场污染的土壤中的对照。随着两种土壤中的金属浓度增加,避免行为也增加。金属对猫,豆荚或SOD活性的影响受土壤纹理和pH等土壤性质的影响。这些结果表明F. Candida的抗氧化酶活性可以由重金属诱导并可能用于评估毒性,并且还必须考虑在不同类型的野外土壤中的酶活性分析土壤性能。

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