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Rhamnolipid production by a gamma ray-induced Pseudomonas aeruginosa mutant under solid state fermentation

机译:固态发酵下γ射线诱导的铜绿假单胞菌突变体产生鼠李糖脂

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摘要

Solid-state fermentation has a special advantage of preventing the foaming problem that obstructs submerged fermentation processes for rhamnolipid production. In the present work, a 50:50 mixture of sugarcane bagasse and sunflower seed meal was selected as the optimum substrate for rhamnolipid production using a Pseudomonas aeruginosa mutant 15GR and an impregnating solution including 5% v/v glycerol. Using Box–Behnken design, the optimum fermentation conditions were found to be an inoculum size 1% v/v, temperature 30?°C and unlike other studies, pH 8. These optimized conditions yielded a 67% enhancement of rhamnolipid levels reaching 46.85?g rhamnolipids per liter of impregnating solution, after 10?days, which was about 5.5 folds higher than that obtained by submerged liquid fermentation. Although maximum rhamnolipids concentration was obtained after 10?days of incubation, rhamnolipids concentration already reached high levels (41.87?g/l) after only 6?days. This rhamnolipid level was obtained in a shorter time and using lower carbon source concentrations than most studies reported so far. The findings obtained indicate an enormous potential for employing solid-state fermentation for rhamnolipid production by the studied isolate.
机译:固态发酵具有防止泡沫问题的特殊优势,该泡沫问题阻碍了鼠李糖脂生产的浸没式发酵过程。在目前的工作中,使用铜绿假单胞菌突变体15GR和含5%v / v甘油的浸渍溶液,选择甘蔗渣和向日葵籽粉的50:50混合物作为鼠李糖脂生产的最佳底物。使用Box–Behnken设计,发现最佳的发酵条件是接种物的大小为1%v / v,温度为30?C,与其他研究不同,pH为8。这些优化的条件使鼠李糖脂水平提高了67%,达到46.85? 10 d后,每升浸渍溶液中含有60克鼠李糖脂,比浸没液体发酵法高约5.5倍。虽然在孵育10天后获得了最大的鼠李糖脂浓度,但仅在6天后鼠李糖脂浓度就已经达到高水平(41.87微克/升)。与迄今报道的大多数研究相比,鼠李糖脂水平是在较短的时间内获得的,并且使用的碳源浓度较低。所获得的发现表明,通过所研究的分离物利用固态发酵生产鼠李糖脂具有巨大的潜力。

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