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Biosurfactants production by yeasts using soybean oil and glycerol as low cost substrate

机译:酵母以大豆油和甘油为低成本底物生产生物表面活性剂

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摘要

Biosurfactants are bioactive agents that can be produced by many different microorganisms. Among those, special attention is given to yeasts, since they can produce many types of biosurfactants in large scale, using several kinds of substrates, justifying its use for industrial production of those products. For this production to be economically viable, the use of residual carbon sources is recommended. The present study isolated yeasts from soil contaminated with petroleum oil hydrocarbons and assessed their capacity for producing biosurfactants in low cost substrates. From a microbial consortium enriched, seven yeasts were isolated, all showing potential for producing biosurfactants in soybean oil. The isolate LBPF 3, characterized as Candida antarctica, obtained the highest levels of production - with a final production of 13.86 g/L. The isolate LBPF 9, using glycerol carbon source, obtained the highest reduction in surface tension in the growth medium: approximately 43% of reduction after 24 hours of incubation. The products obtained by the isolates presented surfactant activity, which reduced water surface tension to values that varied from 34 mN/m, obtained from the product of isolates LBPF 3 and 16 LBPF 7 (respectively characterized as Candida antarctica and Candida albicans) to 43 mN/m from the isolate LPPF 9, using glycerol as substrate. The assessed isolates all showed potential for the production of biosurfactants in conventional sources of carbon as well as in agroindustrial residue, especially in glycerol.
机译:生物表面活性剂是可以由许多不同的微生物产生的生物活性剂。其中,对酵母特别注意,因为它们可以使用多种底物大规模生产多种类型的生物表面活性剂,从而证明其可用于这些产品的工业生产。为了使该生产在经济上可行,建议使用残留碳源。本研究从受石油烃污染的土壤中分离出酵母,并评估了其在低成本底物中生产生物表面活性剂的能力。从一个富集的微生物联盟中,分离出七个酵母,它们均显示出在大豆油中生产生物表面活性剂的潜力。以南极假丝酵母为特征的分离株LBPF 3获得最高的产量,最终产量为13.86 g / L。使用甘油碳源的分离株LBPF 9在生长培养基中获得了最高的表面张力降低:孵育24小时后降低了约43%。由分离物获得的产物具有表面活性剂活性,这将水表面张力从分离株LBPF 3和16 LBPF 7(分别称为南极假丝酵母和白色念珠菌)的产物获得的水表面张力降低至34 mN / m至43 mN使用甘油作为底物从分离物LPPF 9中获得/ m。评估的分离物均显示出在常规碳源以及农用工业残留物中,特别是甘油中生物表面活性剂生产的潜力。

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