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Biotransformation of Dehydroabietic Abietic and Isopimaric Acids by Mortierella isabellina Immobilized in Polyurethane Foam

机译:固定在聚氨酯泡沫塑料中的伊莎贝拉莫氏菌对脱氢松香酸松香酸和异海松酸的生物转化

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摘要

Polyurethane foam supports immobilization of Mortierella isabellina ATCC 38063, a zygomycete that hydroxylates and thereby detoxifies resin acids found in certain pulp mill effluents. The fungus becomes entrapped as it threads growing mycelia through the open foam matrix. The tenacity of binding and the amount of biomass bound depend on initial spore numbers and nutrient concentration. Optimal dehydroabietic acid transformation occurs with early-stationary-phase foam-bound mycelia suspended in buffer at pH 6.5 to 8.5 with aeration >0.1 liter liter−1 min−1 and near a temperature maximum of 33°C. Neither a greater number of similarly loaded foam cubes nor a greater surface area for similar amounts of biomass increased transformation rates. Compared to free mycelial cultures, foam presence retards growth and decreases the rate of precursor transformation but does not alter the nature of the metabolites formed from dehydroabietic acid, abietic acid, or isopimaric acid. Diffusional barriers or binding of substrates in an inaccessible manner may cause the observed inhibitions. Overall, foam immobilization stabilizes enzymic activity and is a facile laboratory process with scaleup potential.
机译:聚氨酯泡沫可帮助固定伊莎贝拉莫尔氏菌ATCC 38063,这是一种合子菌,能使某些制浆厂的废水中的树脂酸羟化,从而使其解毒。当真菌将生长的菌丝体穿过开放的泡沫基质时,它们会被截留。结合的强度和结合的生物量取决于初始孢子数和营养物浓度。最佳平稳的脱氢松香酸转化发生于悬浮在pH 6.5至8.5,通气> 0.1升 -1 min -1 且接近最高温度为33°C。对于相似量的生物质,更大数量的相似负载的泡沫立方体或更大的表面积都不会增加转化率。与游离菌丝体培养相比,泡沫的存在会阻碍生长并降低前体转化的速度,但不会改变脱氢松香酸,松香酸或异海松酸形成的代谢物的性质。扩散障碍或底物以难以接近的方式结合可能会导致观察到的抑制作用。总体而言,泡沫固定化可稳定酶的活性,并且是一种易于规模化的实验室过程。

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