Zhang Yao, Wang Yanxia, Yang Junhuan, Yang Wu, Wang Xiuwen, Wu Chen, Song Yuanda
Colin Ratledge Center for Microbial Lipids, School of Agricultural Engineering and Food Science, Shandong University of Technology, 266 Xincun West Road, Zibo 255000, Shandong, People's Republic of China.
J Agric Food Chem. 2022 Apr 13;70(14):4373-4381. doi: 10.1021/acs.jafc.2c00359. Epub 2022 Mar 31.
The present study was aimed at facilitating the production of γ-linolenic acid (GLA) from the cellulosic substrate with the engineered oleaginous fungus WJ11. Here, the homologous recombination technology was used to overexpress the cellobiohydrolase (CBH2) derived from and the original delta-6 fatty acid desaturase (D6) in to construct genetically engineered strains capable of effectively using cellulose to enhance GLA synthesis. When cultivated in modified K&R medium supplemented with microcrystalline cellulose, the CBH2 and D6 coexpressing strains led to increases in the biomass (up to 12.8 g/L) and lipid yield (up to 3.7 g/L) of 87% and 2.4-fold, respectively, compared to that of the control strain. Notably, when CBH2 and D6 were coexpressed in , the yield of GLA reached 608 mg/L, which was a dramatic increase of 3.9-fold compared to that of the control strain. This is the first report on promoting the GLA production from the cellulosic substrate via coexpression of CBH2 and delta-6 desaturase. This work provides a theoretical basis for efficient transformation from the cellulosic substrate to functional GLA by CBH2 and D6 coexpressing strains, which might play a positive role in promoting the sustainable development of biological industry.
本研究旨在利用工程产油真菌WJ11从纤维素底物中促进γ-亚麻酸(GLA)的生产。在此,采用同源重组技术在该真菌中过表达源自里氏木霉的纤维二糖水解酶(CBH2)和原始的Δ6脂肪酸去饱和酶(D6),以构建能够有效利用纤维素来增强GLA合成的基因工程菌株。当在添加微晶纤维素的改良K&R培养基中培养时,与对照菌株相比,共表达CBH2和D6的菌株导致生物量(高达12.8 g/L)和脂质产量(高达3.7 g/L)分别增加了87%和2.4倍。值得注意的是,当CBH2和D6在该真菌中共表达时,GLA产量达到608 mg/L,与对照菌株相比显著增加了3.9倍。这是关于通过共表达CBH2和Δ6去饱和酶从纤维素底物促进GLA生产的首次报道。这项工作为通过共表达CBH2和D6的菌株将纤维素底物高效转化为功能性GLA提供了理论基础,这可能对促进生物产业的可持续发展起到积极作用。