首页> 外文期刊>Journal of Microbial & Biochemical Technology >Optimized Atrazine Degradation by Pleurotus ostreatus INCQS 40310: an Alternative for Impact Reduction of Herbicides Used in Sugarcane Crops
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Optimized Atrazine Degradation by Pleurotus ostreatus INCQS 40310: an Alternative for Impact Reduction of Herbicides Used in Sugarcane Crops

机译:平菇增加优化的阿特拉津降解度INCQS 40310:用于减少甘蔗作物中除草剂影响的替代方法

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The herbicide atrazine (2-chloro-4-ethylamine-6-isopropylamine-s-triazine) is extensively used for weed control in sugarcane crops. The application of fungi for the biodegradation of xenobiotics has been studied with promising results. Therefore, atrazine degradation mediated by Pleurotus ostreatus INCQS 40310 was evaluated, and the involvement of ligninolytic enzymes along with the degradation process was also investigated. To promote high degradation percentages and rates, a fractional factorial experimental design was first used to determine the most significant medium components for atrazine degradation. This strategy improved atrazine degradation from 39.0% to 71.0% after 15 days, with the formation of different metabolites. Afterward, a 32 full factorial design was performed using the variables selected in the first part of this study. The salts FeSO4 and MnSO4 showed significant influence in the percentages and the rates of atrazine degradation. The medium optimization resulted in 90.3% and 94.5% of atrazine degradation after 10 days and 15 days, respectively. Although laccase activity was measured during the degradation process, it was not possible to correlate laccase activity with atrazine degradation. The results demonstrated the efficiency of P. ostreatus INCQS 40310 for atrazine degradation, thus demonstrating the potential of this fungus as a bioremediation agent.
机译:除草剂at去津(2-氯-4-乙基胺-6-异丙胺-s-三嗪)被广泛用于甘蔗作物的杂草控制。研究了真菌在异生物素生物降解中的应用,并取得了令人鼓舞的结果。因此,评估了平菇INCQS 40310介导的at去津降解,并且还研究了木质素分解酶的参与以及降解过程。为了促进高降解百分率和降解率,首先使用分数阶乘实验设计来确定最重要的阿特拉津降解介质成分。 15天后,该策略将阿特拉津的降解率从39.0%提高到71.0%,并形成了不同的代谢产物。之后,使用在本研究的第一部分中选择的变量进行了32个全因子设计。 FeSO4和MnSO4盐对at去津的降解百分率和降解速率有显着影响。培养基优化分别在10天和15天后分别导致90.3%和94.5%的阿特拉津降解。尽管在降解过程中测量了漆酶活性,但无法将漆酶活性与at去津降解相关联。结果证明了P. ostreatus INCQS 40310对at去津降解的效率,因此证明了这种真菌作为生物修复剂的潜力。

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