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Soy molasses as a fermentation substrate for the production of biosurfactant using Pseudomonas aeruginosa ATCC 10145

机译:用Pseudomonas Aruginosa ATCC 10145作为发酵基质的大豆糖蜜作为生物活性剂的发酵底物

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Soy molasses is a product co-generated during soybean processing that has high production and low commercial value. Its use has great potential in fermentative processes due to the high concentration of carbohydrates, lipids and proteins. This study investigated the use of Pseudomonas aeruginosa to produce biosurfactants in a soy molasses-based fermentation medium. A central composite design (CCD) was prepared with two variables and three replicates at the central point to optimize the production of biosurfactant. The concentration of soy molasses had values between 29.3 and 170.7 g/L and the initial concentration of microorganism varied between 0.2 and 5.8 g/L. All the experiments were performed in duplicate on a shaker table at 30.0 +/- 1.0 degrees C and 120 rpm for 72 h with samples taken every 12 h. Thus, to validate the experiments, the values of 120 g/L for the initial concentration of soy molasses and 4 g/L for the initial concentration of microorganisms were used. In response, the following values were obtained at 48 h of fermentation: surface tension of 31.9 dyne/cm, emulsifying index of 97.4%, biomass concentration of 11.5 g/L, rhamnose concentration of 6.9 g/L and biosurfactant concentration of 11.70 g/L. Further analysis was carried out for critical micelle concentration (CMC) which was obtained at approximately 80 mg/L. The bands found in Fourier transform infrared spectroscopy analysis had characteristic glycolipids as reported in the literature. These values show a great potential for biosurfactant production using soy molasses as a substrate and bacteria of the species P. aeruginosa.
机译:大豆糖蜜是在大豆加工过程中共同产生的产物,其具有高产量和低商业价值。由于高浓度的碳水化合物,脂质和蛋白质,其使用在发酵过程中具有很大的潜力。本研究研究了使用假单胞菌铜绿假单胞菌在大豆糖蜜的发酵培养基中生产生物活性剂。中央复合设计(CCD)用两个变量制备,中央点的三个重复,以优化生物活性剂的产生。大豆糖蜜的浓度在29.3和170.7g / L之间具有值,并且微生物的初始浓度在0.2和5.8g / L之间变化。所有实验在30.0 +/- 1.0℃和120rpm的振荡器表上一式两份进行,每12小时服用72小时。因此,为了验证实验,使用用于初始浓度的大豆糖蜜和4g / L的微生物初始浓度的120g / l的值。作为响应,在48小时的发酵中获得以下值:31.9达因/厘米的表面张力,乳化指数为97.4%,生物质浓度为11.5g / L,粗浓度为6.9g / L,生物活性剂浓度为11.70g / L.对临界胶束浓度(CMC)进行进一步的分析,其在约80mg / L.在傅里叶变换红外光谱分析中发现的带状有特征糖脂,如文献中报道。这些值显示使用大豆糖蜜作为物种P.铜绿假单胞菌的基材和细菌的生物活性剂产生的潜力。

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