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Atrazine dissipation in a biobed system inoculated with immobilized white-rot fungi

机译:固定化白腐真菌接种生物床系统中去津的消散

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摘要

Due to the environmental concerns about the herbicide atrazine accumulation in food products and water reservoirs, there is a need to develop safe and economical methods for its dissipation. The main aim of this study was to evaluate the atrazine dissipation in a biobed system inoculated with immobilized white-rot fungi in a pelletized support (PS). All fungal isolates evaluated were efficient in colonizing the surface and inner parts of the PS and without differences observed in the colonization over the assay. The highest atrazine dissipation (93%) was observed for Stereum hirsutum Ru-104 after 60 days of incubation. In contrast, the lowest atrazine dissipation (78%) was observed for the non-inoculated biobed over identical period. Trametes versicolor HL01 was involved in the highest phenoloxidase activity. This activity indicates that inoculated and non inoculated biobed were biologically active over the incubation time. High respiration rate in biobed was observed when it was inoculated with S. hirsutum Ru-104. Inoculation of fungi on PS systems might be a coadjutant in the increasing of the fungal efficiency in enzymatic production.
机译:由于对除草剂at去津在食品和水库中积累的环境问题的关注,需要开发一种安全,经济的消散方法。这项研究的主要目的是评估颗粒固定载体(PS)中固定化白腐真菌接种的生物床系统中the去津的耗散情况。评估的所有真菌分离物均能有效定殖PS的表面和内部,并且在整个试验过程中未观察到定植差异。孵育60天后,观察到最大的Stereum hirsutum Ru-104 at去津耗散率(93%)。相反,在相同时期内,未接种生物床的阿特拉津耗散率最低(78%)。云芝Trametes HL01参与了最高的酚氧化酶活性。该活性表明接种的和未接种的生物床在孵育时间内具有生物活性。当用S. hirsutum Ru-104接种生物床时,观察到高的呼吸速率。 PS系统上接种真菌可能是提高酶生产中真菌效率的辅助剂。

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