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基于营养丰富的扇叶棕榈糖和乳清蛋白水解物的发酵培养基,提高光学纯d(-)乳酸的产量。

Enhanced production of optically pure d (-) lactic acid from nutritionally rich Borassus flabellifer sugar and whey protein hydrolysate based-fermentation medium.

作者信息

Reddy Tadi Subbi Rami, E V R Arun, Limaye Anil Mukund, Sivaprakasam Senthilkumar

机构信息

BioPAT Laboratory, Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati, India.

出版信息

Biotechnol Appl Biochem. 2017 Mar;64(2):279-289. doi: 10.1002/bab.1470. Epub 2016 Apr 18.

Abstract

The aim of this study is to optimize the production of optically pure d (-) lactic acid (DLA) employing a cost-effective production medium. Based on the designed biomass approach, Sporolactobacillus inulinus NBRC 13595 was found to exhibit high DLA titer (19.0 g L ) and optical purity (99.6%). A cost-effective medium was constituted using Palmyra palm jaggery (PJ) from Borassus flabellifer and whey protein hydrolysate (WPH) as carbon and nitrogen sources, respectively. Plackett-Burman design indicated that PJ, WPH, and MnSO as significant variables influence DLA production. A rotatable central composite design and response surface methodology were used to optimize the PJ and WPH concentrations. A maximum DLA titer (170.14 g L ) was predicted for 222.24 g L of PJ and 11.99 g L of WPH, respectively. Fermentation experimental results exhibited a maximum DLA titer (189.0 ± 8.53 g L ) and productivity (5.25 ± 0.24 g L H ), which is the highest ever reported for DLA production from a renewable feedstock in the batch process. The present investigation substantiates that the potential application of economically viable raw feedstocks (PJ and WPH) for enhanced DLA production, which is attributed to 2.5-fold reduction in DLA production cost compared with conventional medium.

摘要

本研究的目的是采用具有成本效益的生产培养基来优化光学纯d(-)乳酸(DLA)的生产。基于设计的生物质方法,发现菊糖芽孢乳杆菌NBRC 13595具有较高的DLA滴度(19.0 g/L)和光学纯度(99.6%)。分别使用来自扇叶棕榈的棕榈糖(PJ)和乳清蛋白水解物(WPH)作为碳源和氮源,构成了一种具有成本效益的培养基。Plackett-Burman设计表明,PJ、WPH和硫酸锰作为显著变量影响DLA的生产。采用旋转中心复合设计和响应面方法来优化PJ和WPH的浓度。预测PJ浓度为222.24 g/L和WPH浓度为11.99 g/L时,DLA的最大滴度为170.14 g/L。发酵实验结果显示,DLA的最大滴度为(189.0±8.53 g/L),生产率为(5.25±0.24 g/L·h),这是分批过程中从可再生原料生产DLA的最高报道。本研究证实了经济可行的原料(PJ和WPH)在提高DLA产量方面的潜在应用,这使得DLA生产成本比传统培养基降低了2.5倍。

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