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Influence of Herbicide Triasulfuron on Soil Microbial Community in an Unamended Soil and a Soil Amended with Organic Residues

机译:除草剂三嘧磺隆对未改良土壤和有机残基改良土壤的微生物群落的影响

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摘要

The effect of organic amendments and pesticides on a soil microbial community has garnered considerable interest due to the involvement of microorganisms in numerous soil conservation and maintenance reactions. The aim of this work was to assess the influence on a soil microbial community of the simultaneous application of the herbicide triasulfuron at three doses (2, 10, and 50 mg kg-1), with an organic amendment [sewage sludge (SS) or green compost (GC)]. Dissipation kinetics, soil microbial biomass, dehydrogenase activity (DHA) and respiration, and the profile of phospholipid fatty acids (PLFAs) extracted from the soil, were determined in unamended (S) soil and amended (S+SS and S+GC) ones. Triasulfuron dissipation followed the single first-order kinetics model. Half-life (DT50) values were higher in the amended soils than in the unamended one for the 10 and 50 mg kg-1 doses. The dissipation rates were lower in the S+GC soil for the three herbicide doses applied. In general, soil biomass, DHA and respiration values increased in SS- and GC-amended soils compared to the unamended one. DHA values decreased (S and S+SS) or increased (S+GC) with the incubation time of soil with herbicide at the different doses applied. Respiration values increased with the herbicide doses applied and decreased with the incubation time, although maximum values were obtained for soils treated with the highest dose after 70 days of incubation. PLFA analysis indicated different effects of triasulfuron on the soil microbial community structure depending on the organic amendments. While the increasing triasulfuron doses resulted in deeper alterations in the S soil, the time after triasulfuron application was the most important variation in the S+SS and S+GC soils. The overall results indicate that the soil amendment has an effect on herbicide dissipation rate and the soil microbial community. Initially, a high dose of triasulfuron had detrimental effects on the soil microbial community, which is important in the case of the long-term use of this compound.
机译:由于微生物参与了许多土壤养护和维持反应,因此有机改性剂和农药对土壤微生物群落的影响引起了广泛的关注。这项工作的目的是评估有机剂量的三剂(2、10和50 mg kg -1 )同时施用除草剂三氟磺隆对土壤微生物群落的影响。 [污水污泥(SS)或绿色堆肥(GC)]。测定了未改良土壤和改良土壤S + SS和S + GC的耗散动力学,土壤微生物生物量,脱氢酶活性(DHA)和呼吸作用以及从土壤中提取的磷脂脂肪酸(PLFA)的分布。 。三氟磺隆的耗散遵循单一的一级动力学模型。在10和50 mg kg -1 剂量下,改良土壤中的半衰期(DT50)值高于未改良土壤中的半衰期。施用三种除草剂剂量后,S + GC土壤中的耗散率较低。通常,与未改良土壤相比,经SS和GC改良土壤的土壤生物量,DHA和呼吸值增加。在不同剂量的土壤中,DHA值随除草剂在土壤中的孵育时间而降低(S和S + SS)或增加(S + GC)。呼吸值随施用除草剂剂量的增加而增加,随孵育时间的减少而降低,尽管在孵育70天后以最高剂量处理的土壤获得了最大值。 PLFA分析表明,三硫磺隆对土壤微生物群落结构的影响取决于有机修饰物。尽管增加的三氟磺隆剂量导致S土壤发生更深的变化,但三氟磺隆施用后的时间是S + SS和S + GC土壤中最重要的变化。总体结果表明,土壤改良剂对除草剂耗散率和土壤微生物群落有影响。最初,高剂量的三氟磺隆对土壤微生物群落具有有害影响,这在长期使用该化合物的情况下很重要。

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