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Enzymatic activities and microbial biomass in peanut field soil as affected by the foliar application of tebuconazole

机译:戊唑醇叶面施用对花生田土壤酶活性和微生物量的影响

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Field experiments in peanut (Arachis hypogaea L.) soil ecosystem were conducted during the summer seasons (February-June) of the year 2013 and 2014 in black clay soil treated with tebuconazole at field rate (FR), 2-times FR (2FR) and 10-times FR (10FR) as foliar spray to determine the impact of tebuconazole on soil microbial properties and enzymatic activities. Tebuconazole application at FR and 2FR resulted in a short-lived and transitory toxic effect on soil microbial properties and enzymatic activities. The duration of this disturbance was slightly longer at 10FR. Incorporation of tebuconazole in soil resulted in stimulating the soil microbial activity as evidenced by increased ammonification and nitrification rates and increased soil microbial biomass at later stage. However, it was more toxic to soil ergosterol which is the indicator of the presence of viable fungi. Soil enzymatic activities like fluorescein diacetate-hydrolyzing activity, urease, phosphatase and aryl sulfatase are either unaffected or shortly inhibited and then recovered. However, dehydrogenase and nitrate reductase activity decreased more drastically and can be used as valuable indicator to assess the impact of tebuconazole application on soil health. The results indicated that instead of single assays, a broad spectrum analysis of soil microbial and enzymatic activities gives a better insight about the impacts of pesticide on soil health. From this study, it is also concluded that the application of tebuconazole at 10FR had adverse effects on the microbial variables and the effect on long-term application should be studied further.
机译:在2013年和2014年夏季(2月至6月)的花生田(Arachis hypogaea L.)土壤生态系统中,对田戊康唑(FR)进行了2倍FR(2FR)的戊唑醇处理的黑粘土土壤进行了田间试验。和10倍阻燃剂(10FR)作为叶面喷雾剂来测定戊唑醇对土壤微生物特性和酶活性的影响。戊唑醇在FR和2FR的施用对土壤微生物特性和酶活性产生短暂且短暂的毒性作用。这种干扰的持续时间在10FR时稍长一些。在土壤中掺入戊唑醇可刺激土壤微生物活性,这可通过增加氨化和硝化速率以及在后期提高土壤微生物量来证明。然而,它对土壤麦角固醇的毒性更大,这是存在真菌的指示。土壤酶活如荧光素二乙酸酯水解活性,脲酶,磷酸酶和芳基硫酸酯酶不受影响或被短时间抑制然后恢复。然而,脱氢酶和硝酸还原酶的活性急剧下降,可以用作评估戊唑醇对土壤健康影响的重要指标。结果表明,对土壤微生物和酶活性进行的广谱分析代替了单一分析,可以更好地了解农药对土壤健康的影响。从这项研究中,还得出结论,以10FR施用戊唑醇对微生物变量有不利影响,应进一步研究长期应用的影响。

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