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Foam-free production of Surfactin via anaerobic fermentation of Bacillus subtilis DSM 10T

机译:通过枯草芽孢杆菌DSM 10T的厌氧发酵生产无泡沫表面活性素

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摘要

Surfactin is one of the most popular biosurfactants due to its numerous potential applications. The usually aerobic production via fermentation of Bacillus subtilis is accompanied by vigorous foaming which leads to complex constructions and great expense. Therefore it is reasonable to search for alternative foam-free production processes. The current study introduces a novel approach to produce Surfactin in a foam-free process applying a strictly anaerobic bioreactor cultivation. The process was performed several times with different glucose concentrations in mineral salt medium. The fermentations were analyzed regarding specific (qSurfactin, vol. qSurfactin) and overall product yields (YP/X, YP/S) as well as substrate utilization (YX/S). Fermentations in which 2.5 g/L glucose were employed proofed to be the most effective, reaching product yields of YP/X = 0.278 g/g. Most interesting, the product yields exceeded classical aerobic fermentations, in which foam fractionation was applied. Additionally, values for specific production rate qSurfactin (0.005 g/(g∙h)) and product yield per consumed substrate (YP/S = 0.033 g/g) surpass results of comparable foam-free processes. The current study introduces an alternative to produce a biosurfactant that overcomes the challenges of severe foaming and need for additional constructions.Electronic supplementary materialThe online version of this article (doi:10.1186/s13568-015-0107-6) contains supplementary material, which is available to authorized users.
机译:Surfactin因其众多的潜在应用而成为最受欢迎的生物表面活性剂之一。枯草芽孢杆菌发酵通常需氧生产伴随着剧烈的起泡,这导致结构复杂和费用高昂。因此,寻找替代的无泡沫生产工艺是合理的。当前的研究介绍了一种采用严格厌氧生物反应器培养的无泡沫工艺生产表面活性素的新方法。该过程在矿物盐培养基中以不同的葡萄糖浓度进行了数次。分析发酵的特异性(qSurfactin,vol。qSurfactin)和总产物产率(YP / X,YP / S)以及底物利用率(YX / S)。使用2.5 g / L葡萄糖的发酵被证明是最有效的,达到YP / X = 0.278 g / g的产品产量。最有趣的是,产品产量超过了传统的需氧发酵,后者采用了泡沫分离技术。此外,比生产率qSurfactin(0.005 g /(g∙h))和单位消耗基质的产品产率(YP / S = 0.033 g / g)的值超过了无泡沫工艺的结果。当前的研究介绍了一种生产生物表面活性剂的替代方法,该方法克服了严重起泡的挑战以及对其他结构的需求。电子补充材料本文的在线版本(doi:10.1186 / s13568-015-0107-6)包含补充材料,该材料是可供授权用户使用。

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