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Biosurfactant from endophytic Bacillus pumilus 2A: physicochemical characterization, production and optimization and potential for plant growth promotion

机译:来自内皮芽孢杆菌的生物活性剂2a:物理化学表征,生产和优化以及植物生长促进潜力

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Microbial surfactants called biosurfactants, thanks to their high biodegradability, low toxicity and stability can be used not only in bioremediation and oil processing, but also in the food and cosmetic industries, and even in medicine. However, the high production costs of microbial surfactants and low efficiency limit their large-scale production. This requires optimization of management conditions, including the possibility of using waste as a carbon source, such as food processing by-products. This papers describes the production and characterization of the biosurfactant obtained from the endophytic bacterial strain Bacillus pumilus 2A grown on various by-products of food processing and its potential applications in supporting plant growth. Four different carbon and nitrogen sources, pH, inoculum concentration and temperature were optimized within Taguchi method. Optimization of bioprocess within Taguchi method and experimental analysis revealed that the optimal conditions for biosurfactant production were brewer’s spent grain (5% w/v), ammonium nitrate (1% w/v), pH of 6, 5% of inoculum, and temperature at 30?°C, leading to 6.8?g/L of biosurfactant. Based on gas chromatography–mass spectrometry and Fourier transform infrared spectroscopy analysis produced biosurfactant was determined as glycolipid. Obtained biosurfactant has shown high and long term thermostability, surface tension of 47.7?mN/m, oil displacement of 8?cm and the emulsion index of 69.11%. The examined glycolipid, used in a concentration of 0.2% significantly enhanced growth of Phaseolus vulgaris L. (bean), Raphanus L. (radish), Beta vulgaris L. (beetroot). The endophytic Bacillus pumilus 2A produce glycolipid biosurfactant with high and long tem thermostability, what makes it useful for many purposes including food processing. The use of brewer’s spent grain as the sole carbon source makes the production of biosurfactants profitable, and from an environmental point of view, it is an environmentally friendly way to remove food processing by products. Glycolipid produced by endophytic Bacillus pumilus 2A significantly improve growth of Phaseolus vulgaris L. (bean), Raphanus L. (radish), Beta vulgaris L. (beetroot). Obtained results provide new insight to the possible use of glycolipids as plant growth promoting agents.
机译:由于它们的高生物降解性,低毒性和稳定性,而且不能仅在食品和化妆品行业,甚至在医学中使用低毒性和稳定性的微生物表面活性剂。然而,微生物表面活性剂的高生产成本和低效率限制了它们的大规模生产。这需要优化管理条件,包括使用废物作为碳源的可能性,例如食品加工副产物。本文描述了从食用食品加工各种副产物的内生细菌菌株芽孢杆菌2a获得的生物活性剂的生产和表征及其在支持植物生长方面的潜在应用。在Taguchi方法中优化了四种不同的碳和氮源,pH,接种物浓度和温度。在Taguchi方法中优化生物处理和实验分析显示,生物表面活性剂的最佳条件是酿酒猪的谷物(5%w / v),硝酸铵(1%w / v),pH值为6,5%的接种物和温度在30?°C,导致6.8?G / L的生物活性剂。基于气相色谱 - 质谱和傅里叶变换红外光谱分析,产生的生物活性剂被确定为糖脂。获得的生物表面活性剂已经显示出高且长期的热稳定性,表面张力为47.7Ω·mn / m,油位移为8Ωcm,乳液指数为69.11%。所检查的糖脂,用于浓度为0.2%的0.2%,显着增强了寻常的L.(豆类),Raphanus L.(萝卜),β寻常L.(甜菜根)的增长。内生芽孢杆菌2a产生具有高和长TEM热稳定性的糖脂生物活性剂,这使其可用于许多目的,包括食物加工。使用Brewer的粮食作为唯一碳源使得生物活性剂的生产盈利,并且从环境的观点来看,它是一种环保的方式来消除产品的食物加工。内胚芽孢杆菌2A产生的糖脂显着提高了寻常的Peacholusuals L.(Bean),Raphanus L.(萝卜),β寻呼L.(甜菜根)的生长。获得的结果为植物生长促进剂提供了新的糖脂等糖脂的新见解。

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