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Liquid-surface immobilization system and liquid-liquid interface bioreactor: Application to fungal hydrolysis

机译:液面固定系统和液液界面生物反应器:在真菌水解中的应用

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摘要

Novel fungal cultivation and bioconversion systems are proposed. Spores and mycelia of a fungus suspended in a liquid medium were effectively floated on a liquid surface by the aid of a ballooned microsphere (MS). Many fungi such as Aspergillus and Penicillium formed a thick and physically strong fungus-MS mat on the liquid surface followed by stationary cultivation (LSI). The fungus-MS mat of Absidia coerulea IFO 4423 was overlaid by a solution of 2-ethylhexyl acetate (1) in n-decane (liquid-liquid interface bioreactor, L-L IBR). The strain could efficiently catalyze the hydrolysis of 1 to 2-ethyl-1-hexanol (2). The accumulation of 2 in the L-L IBR was significantly higher than those in emulsion and organic-aqueous two-liquid-phase systems and a formerly reported interface bioreactor (solid-liquid interface bioreactor, S-L IBR). Furthermore, lipase production in the LSI system was also higher than that in a submerged cultivation system.
机译:提出了新颖的真菌培养和生物转化系统。悬浮在液体介质中的真菌的孢子和菌丝体借助于带气囊的微球(MS)有效地漂浮在液体表面上。许多真菌(例如曲霉菌和青霉菌)在液体表面上形成了厚实的物理真菌-MS垫,随后进行了固定培养(LSI)。 Absidia coerulea IFO 4423的真菌-MS垫被乙酸2-乙基己酯(1)在正癸烷(液-液界面生物反应器,L-L IBR)中的溶液覆盖。该菌株可以有效地催化1到2-乙基-1-己醇(2)的水解。 L-L IBR中2的累积量显着高于乳液和有机水两液相系统和先前报道的界面生物反应器(固液界面生物反应器,S-L IBR)。此外,LSI系统中的脂肪酶产量也高于淹没栽培系统中的脂肪酶产量。

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