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Calorimetric Analysis of Effects of a Soil-Stress Compound on Soil-Microbial Activity

机译:土壤压力化合物对土壤微生物活性影响的量热分析

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摘要

Stressing effects of the pesticide 2,4-dichlorophenoxyacetic acid (2,4-D) on soil-microbial activity were analyzed by a calorimetric method. Thirty-six mg glucose was added to 10 g of upland, orchard, paddy, sand-dune, natural-forest, and cedar-forest soils, respectively, in the presence of various concentrations of 2,4-D, and the evolved heat due to the glucose degradation was recorded at 25 ℃. The heat-evolution curves were analyzed on the basis of Richards growth model to evaluate several parameters that characterize the process of glucose degradation. The apparent degree of resistance of the soil microbes to 2,4-D was estimated from the 50 % stressing concentration K_i and the minimum inhibitory concentration MIC, which were evaluated by analyzing the 2,4-D-concentration-dependence of the degradation parameters. It was shown that the degree of resistance of the two kinds of forest soils were of an order of magnitude greater than that of the sand-dune soil in terms of the value of K_i. These stressing parameters, K_i and MIC, are valid measures for quantitative estimation of the stressing effects of pesticides on soil microbial activity. soil microbes; soil-stress compound;
机译:通过量热法分析了农药2,4-二氯苯氧基乙酸(2,4-D)对土壤微生物活性的胁迫作用。在存在各种浓度的2,4-D并放出热量的情况下,分别向10 g的旱地,果园,稻田,沙丘,天然林和雪松林土壤中添加36 mg葡萄糖在25℃下记录了由于葡萄糖降解所致。在Richards生长模型的基础上分析了热演化曲线,以评估表征葡萄糖降解过程的几个参数。根据50%的胁迫浓度K_i和最小抑菌浓度MIC估算土壤微生物对2,4-D的表观抵抗力,通过分析降解参数的2,4-D浓度依赖性来评估。结果表明,就K_i的值而言,两种森林土壤的抵抗程度比沙丘土壤的抵抗程度大一个数量级。这些胁迫参数K_i和MIC是定量评估农药对土壤微生物活性的胁迫效应的有效手段。土壤微生物;土壤压力化合物;

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