首页> 外文期刊>Journal of Environmental Science and Health. Part B, Pesticides, Food Contaminants and Agricultural Wastes >Atrazine degradation by fungal co-culture enzyme extracts under different soil conditions
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Atrazine degradation by fungal co-culture enzyme extracts under different soil conditions

机译:不同土壤条件下真菌共培养酶提取物对阿特拉津的降解作用

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This investigation was undertaken to determine the atrazine degradation by fungal enzyme extracts (FEEs) in a clay-loam soil microcosm contaminated at field application rate (5μg g~(-1)) and to study the influence of different soil microcosm conditions, including the effect of soil sterilization, water holding capacity, soil pH and type of FEEs used in atrazine degradation through a 2~4 factorial experimental design. The Trametes maxima-Paecilomyces carneus co-culture extract contained more laccase activity and hydrogen peroxide (H_2O_2) content (laccase = 18956.0 U mg protein~(-1), H_2O_2 = 6.2 mg L~(-1)) than the T. maxima monoculture extract (laccase = 12866.7 U mg protein~(-1), H_2O_2 = 4.0 mg L~(-1)). Both extracts were able to degrade atrazine at 100%; however, the T. maxima monoculture extract (0.32 h) achieved a lower half-degradation time than its co-culture with P. carneus (1.2 h). The FEE type (p = 0.03) and soil pH (p = 0.01) significantly affected atrazine degradation. The best degradation rate was achieved by the T. maxima monoculture extract in an acid soil (pH = 4.86). This study demonstrated that both the monoculture extracts of the native strain T. maxima and its co-culture with P. carneus can efficiently and quickly degrade atrazine in clay-loam soils.
机译:这项研究旨在确定在土壤施用量(5μgg((-1))污染的粘土壤土土壤微生物中真菌酶提取物(FEEs)对阿特拉津的降解作用,并研究不同土壤微生物条件的影响,包括通过2〜4阶乘实验设计,研究了土壤灭菌,保水量,土壤pH值和阿特拉津降解所用FEE的类型。中华曲霉-拟青霉共培养提取物的酶活性和过氧化氢(H_2O_2)含量(最大为漆酶= 18956.0 U mg〜(-1),H_2O_2 = 6.2 mg L〜(-1))。单培养提取物(漆酶= 12866.7 U mg蛋白〜(-1),H_2O_2 = 4.0 mg L〜(-1))。两种提取物都能降解阿特拉津100%。然而,最大T.max单一培养物提取物(0.32h)比其与Carneneus共培养物(1.2h)的半降解时间短。 FEE类型(p = 0.03)和土壤pH(p = 0.01)显着影响阿特拉津的降解。通过在酸性土壤(pH = 4.86)中的最大锥虫单培养提取物获得最佳降解率。这项研究表明,天然菌株最大单胞菌的单培养提取物及其与肉食假单胞菌的共培养都可以有效,快速地降解粘土壤土中的阿特拉津。

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