Department of Biomass Science & Conversion Technologies, Sandia National Laboratories, Livermore, CA, USA.
Joint BioEnergy Institute, Emeryville, CA, USA.
Sci Rep. 2017 Aug 21;7(1):8420. doi: 10.1038/s41598-017-07895-1.
Naturally, many aerobic organisms degrade lignin-derived aromatics through conserved intermediates including protocatechuate and catechol. Employing this microbial approach offers a potential solution for valorizing lignin into valuable chemicals for a potential lignocellulosic biorefinery and enabling bioeconomy. In this study, two hybrid biochemical routes combining lignin chemical depolymerization, plant metabolic engineering, and synthetic pathway reconstruction were demonstrated for valorizing lignin into value-added products. In the biochemical route 1, alkali lignin was chemically depolymerized into vanillin and syringate as major products, which were further bio-converted into cis, cis-muconic acid (ccMA) and pyrogallol, respectively, using engineered Escherichia coli strains. In the second biochemical route, the shikimate pathway of Tobacco plant was engineered to accumulate protocatechuate (PCA) as a soluble intermediate compound. The PCA extracted from the engineered Tobacco was further converted into ccMA using the engineered E. coli strain. This study reports a direct process for converting lignin into ccMA and pyrogallol as value-added chemicals, and more importantly demonstrates benign methods for valorization of polymeric lignin that is inherently heterogeneous and recalcitrant. Our approach also validates the promising combination of plant engineering with microbial chassis development for the production of value added and speciality chemicals.
自然地,许多需氧生物通过包括原儿茶酸和儿茶酚在内的保守中间体来降解木质素衍生的芳烃。采用这种微生物方法为将木质素转化为有价值的化学品提供了一种潜在的解决方案,可用于潜在的木质纤维素生物精炼厂和生物经济。在这项研究中,展示了两种结合木质素化学解聚、植物代谢工程和合成途径重建的混合生化途径,将木质素转化为附加值产品。在生化途径 1 中,碱木质素被化学解聚成香草醛和丁香酸作为主要产物,然后分别使用工程化的大肠杆菌菌株将其生物转化为顺,顺-粘康酸(ccMA)和焦酚。在第二条生化途径中,烟草植物的莽草酸途径被工程化以积累原儿茶酸(PCA)作为可溶性中间化合物。从工程化烟草中提取的 PCA 进一步使用工程化的大肠杆菌菌株转化为 ccMA。本研究报告了一种将木质素直接转化为 ccMA 和焦酚作为有价值化学品的方法,更重要的是证明了对固有异质和难处理的聚合木质素进行增值利用的良性方法。我们的方法还验证了植物工程与微生物底盘开发相结合生产增值和特种化学品的有前途的组合。