Instituto de Biociencias de la Patagonia (INBIOP), Universidad Nacional de la Patagonia San Juan Bosco y CONICET, Km 4-Ciudad Universitaria 9000, Comodoro Rivadavia, Chubut, Argentina.
World J Microbiol Biotechnol. 2018 Jul 10;34(8):114. doi: 10.1007/s11274-018-2499-3.
The accumulation of triacylglycerols (TAG) is a common feature among actinobacteria belonging to Rhodococcus genus. Some rhodococcal species are able to produce significant amounts of those lipids from different single substrates, such as glucose, gluconate or hexadecane. In this study we analyzed the ability of different species to produce lipids from olive oil mill wastes (OMW), and the possibility to enhance lipid production by genetic engineering. OMW base medium prepared from alperujo, which exhibited high values of chemical oxygen demand (127,000 mg/l) and C/N ratio (508), supported good growth and TAG production by some rhodococci. R. opacus, R. wratislaviensis and R. jostii were more efficient at producing cell biomass (2.2-2.7 g/l) and lipids (77-83% of CDW, 1.8-2.2 g/l) from OMW than R. fascians, R. erythropolis and R. equi (1.1-1.6 g/l of cell biomass and 7.1-14.0% of CDW, 0.1-0.2 g/l of lipids). Overexpression of a gene coding for a fatty acid importer in R. jostii RHA1 promoted an increase of 2.2 fold of cellular biomass value with a concomitant increase in lipids production during cultivation of cells in OMW. This study demonstrates that the bioconversion of OMW to microbial lipids is feasible using more robust rhodococal strains. The efficiency of this bioconversion can be significantly enhanced by engineering strategies.
三酰基甘油 (TAG) 的积累是属于红球菌属的放线菌的共同特征。一些红球菌种能够从不同的单一底物(如葡萄糖、葡糖酸盐或十六烷)中产生大量这些脂质。在这项研究中,我们分析了不同物种利用橄榄油厂废物 (OMW) 生产脂质的能力,以及通过基因工程提高脂质生产的可能性。从阿尔普尔霍(alperujo)制备的 OMW 基础培养基具有高化学需氧量(127,000mg/l)和 C/N 比(508),支持某些红球菌的良好生长和 TAG 生产。R. opacus、R. wratislaviensis 和 R. jostii 比 R. fascians、R. erythropolis 和 R. equi 更有效地从 OMW 中生产细胞生物质(2.2-2.7g/l)和脂质(77-83%的 CDW,1.8-2.2g/l)(1.1-1.6g/l 的细胞生物质和 7.1-14.0%的 CDW,0.1-0.2g/l 的脂质)。在 R. jostii RHA1 中过表达编码脂肪酸导入蛋白的基因,可在细胞培养过程中促进细胞生物质值增加 2.2 倍,同时增加脂质产量。这项研究表明,使用更健壮的红球菌株,将 OMW 生物转化为微生物脂质是可行的。通过工程策略,可以显著提高这种生物转化的效率。