Institute of Biological Sciences, University of Pernambuco, Rua Arnóbio Marques, 310, Santo Amaro, Recife, Pernambuco, 50.100-130, Brazil.
Research Group on Biomass Energy, Department of Nuclear Energy, Federal University of Pernambuco, 50740-540, Recife, PE, 50740-540, Brazil.
Appl Biochem Biotechnol. 2021 May;193(5):1585-1601. doi: 10.1007/s12010-021-03513-z. Epub 2021 Jan 28.
This study evaluated the bioproduction of 1,3-propanediol by Lactobacillus diolivorans in the medium based on agro-industrial residues and vegetal biomass substituting the MRS medium components. It was performed on a set of acid treatments and batch fermentations assays with crude glycerol (TCG) from biodiesel production, corn steep liquor (CSL), and cactus cladode hydrolyzate (CCH). Firstly, it was carried out on batch fermentation with different pure glycerol concentrations in MRS medium which was carried out, and the best condition achieved 4.66 g/L and 0.61 g/g of 1,3-PDO production and yield, respectively. Then, the TCG was evaluated, and a discrete increase of 1,3-PDO was observed. The replacement of the MRS medium nutrients by CLS was assessed, at different concentrations, for bacteria growth, and 5% of CLS reproduced the same biomass formation compared to the bacteria growth in MRS medium. It was also added cactus cladode hydrolyzate as the only sugar source, which showed a 1,3-PDO production close to the medium with pure glucose. Finally, a B-complex vitamin was added to the batch fermentation medium composed of TCG, CLS, and CCH, replacing all the costly MRS components. In this medium, the production of 1,3-propanediol was 6.57 g/L with a yield of 0.75 g/g. It means an increment of 29% and 19%, respectively, compared to MRS medium. Therefore, the combination of treated crude glycerol, corn steep liquor, and cactus cladode hydrolyzate has excellent potential for 1,3-PDO production by L. diolivorans.
本研究评估了在基于农业工业残渣和植物生物质的培养基中,用植物乳杆菌生产 1,3-丙二醇,替代了 MRS 培养基的成分。该研究采用一系列酸处理和分批发酵实验,以生物柴油生产中的粗甘油(TCG)、玉米浆(CSL)和仙人掌茎髓水解物(CCH)为原料。首先,在 MRS 培养基中进行了不同纯甘油浓度的分批发酵实验,最佳条件下 1,3-PDO 的产量和得率分别达到了 4.66g/L 和 0.61g/g。然后,评估了 TCG 的效果,观察到 1,3-PDO 的产量明显增加。不同浓度的 CSL 替代 MRS 培养基中的营养物质,对细菌生长的影响不同,5%的 CSL 可以复制出与 MRS 培养基中相同的细菌生物量。此外,还添加了仙人掌茎髓水解物作为唯一的糖源,其 1,3-PDO 的产量接近含有纯葡萄糖的培养基。最后,在由 TCG、CSL 和 CCH 组成的分批发酵培养基中添加了 B 族维生素复合物,替代了所有昂贵的 MRS 成分。在这种培养基中,1,3-丙二醇的产量为 6.57g/L,得率为 0.75g/g。与 MRS 培养基相比,分别提高了 29%和 19%。因此,经过处理的粗甘油、玉米浆和仙人掌茎髓水解物的组合具有巨大的潜力,可以用于植物乳杆菌生产 1,3-PDO。