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Immobilization of the white-rot fungus Anthracophyllum discolor to degrade the herbicide atrazine

机译:固定化白腐真菌变色炭疽菌以降解除草剂阿特拉津

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摘要

Herbicides cause environmental concerns because they are toxic and accumulate in the environment, food products and water supplies. There is a need to develop safe, efficient and economical methods to remove them from the environment, often by biodegradation. Atrazine is such herbicide. White-rot fungi have the ability to degrade herbicides of potential utility. This study formulated a novel pelletized support to immobilize the white-rot fungus Anthracophyllum discolor to improve its capability to degrade the atrazine using a biopurification system (BS). Different proportions of sawdust, starch, corn meal and flaxseed were used to generate three pelletized supports (F1, F2 and F3). In addition, immobilization with coated and uncoated pelletized supports (CPS and UPS, respectively) was assessed. UPS-F1 was determined as the most effective system as it provided high level of manganese peroxidase activity and fungal viability. The half-life (t1/2) of atrazine decreased from 14 to 6 days for the control and inoculated samples respectively. Inoculation with immobilized A. discolor produced an increase in the fungal taxa assessed by DGGE and on phenoloxidase activity determined. The treatment improves atrazine degradation and reduces migration to surface and groundwater.
机译:除草剂有毒并且会在环境,食品和水供应中积累,因此引起环境问题。有必要开发一种安全,有效和经济的方法,通常通过生物降解将其从环境中清除。阿特拉津就是这种除草剂。白腐真菌具有降解潜在用途的除草剂的能力。这项研究制定了一种新型的颗粒状载体,以固定白腐真菌炭疽菌变色,以提高其使用生物纯化系统(BS)降解阿特拉津的能力。使用不同比例的木屑,淀粉,玉米粉和亚麻籽来生成三种颗粒状载体(F1,F2和F3)。另外,评估了用包衣和未包衣的颗粒状载体(分别为CPS和UPS)的固定性。 UPS-F1被确定为最有效的系统,因为它提供了高水平的锰过氧化物酶活性和真菌活力。对照和接种样品中at去津的半衰期(t1 / 2)从14天减少到6天。固定化变色曲霉接种后,通过DGGE评估的真菌类群增加,酚类氧化酶活性也提高。该处理改善了阿特拉津的降解并减少了向地表水和地下水的迁移。

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