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采用两阶段分批培养策略,对甘蔗梢水解液和粗甘油进行脂质生产,并对每个阶段进行单独优化。

Lipid Production from Sugarcane Top Hydrolysate and Crude Glycerol with using a Two-Stage Batch-Cultivation Strategy with Separate Optimization of Each Stage.

作者信息

Boonyarit Jeerapan, Polburee Pirapan, Khaenda Bongkot, Zhao Zongbao K, Limtong Savitree

机构信息

Department of Microbiology, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.

Rattanakosin College for Sustainable Energy and Environment (RCSEE), Rajamangala University of Technology Rattanakosin, Nakhon Pathom 73170, Thailand.

出版信息

Microorganisms. 2020 Mar 23;8(3):453. doi: 10.3390/microorganisms8030453.

Abstract

Lipids from oleaginous microorganisms, including oleaginous yeasts, are recognized as feedstock for biodiesel production. A production process development of these organisms is necessary to bring lipid feedstock production up to the industrial scale. This study aimed to enhance lipid production of low-cost substrates, namely sugarcane top and biodiesel-derived crude glycerol, by using a two-stage cultivation process with DMKU-SP314. In the first stage, sugarcane top hydrolysate was used for cell propagation, and in the second stage, cells were suspended in a crude glycerol solution for lipid production. Optimization for high cell mass production in the first stage, and for high lipid production in the second stage, were performed separately using a one-factor-at-a-time methodology together with response surface methodology. Under optimum conditions in the first stage (sugarcane top hydrolysate broth containing; 43.18 g/L total reducing sugars, 2.58 g/L soy bean powder, 0.94 g/L (NH)SO, 0.39 g/L KHPO and 2.5 g/L MgSO•7HO, pH 6, 200 rpm, 28 C and 48 h) and second stage (81.54 g/L crude glycerol, pH 5, 180 rpm, 27 C and 196 h), a high lipid concentration of 15.85 g/L, a high cell mass of 21.07 g/L and a high lipid content of 73.04% dry cell mass were obtained.

摘要

包括产油酵母在内的产油微生物的脂质被认为是生物柴油生产的原料。有必要开发这些微生物的生产工艺,以使脂质原料生产达到工业规模。本研究旨在通过使用DMKU-SP314进行两阶段培养工艺,提高低成本底物(即甘蔗梢和生物柴油衍生的粗甘油)的脂质产量。在第一阶段,甘蔗梢水解产物用于细胞增殖,在第二阶段,细胞悬浮在粗甘油溶液中用于脂质生产。分别采用一次一因子法和响应面法,对第一阶段的高细胞量生产和第二阶段的高脂质生产进行了优化。在第一阶段的最佳条件下(甘蔗梢水解产物肉汤含有;43.18 g/L总还原糖、2.58 g/L大豆粉、0.94 g/L(NH)SO、0.39 g/L KHPO和2.5 g/L MgSO•7HO,pH 6,200 rpm,28℃和48 h)和第二阶段(81.54 g/L粗甘油,pH 5,180 rpm,27℃和196 h),获得了15.85 g/L的高脂质浓度、21.07 g/L的高细胞量和73.04%干细胞质量的高脂质含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8333/7143989/a5b52e2f9745/microorganisms-08-00453-g001.jpg

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