Microbial & Plant Biotechnology Department, Polymer Biotechnology Group, Biological Research Centre Margarita Salas, Spanish National Research Council (CIB-CSIC), Madrid, Spain; Interdisciplinary Platform for Sustainable Plastics towards a Circular Economy-Spanish National Research Council (SusPlast-CSIC), Madrid, Spain.
Microbial & Plant Biotechnology Department, Environmental Biotechnology Group, Biological Research Centre Margarita Salas, Spanish National Research Council (CIB-CSIC), Madrid, Spain.
Bioresour Technol. 2024 Aug;406:130972. doi: 10.1016/j.biortech.2024.130972. Epub 2024 Jun 13.
Rhodospirillum rubrum is a photosynthetic purple non-sulphur bacterium with great potential to be used for complex waste valorisation in biotechnological applications due to its metabolic versatility. This study investigates the production of hydrogen (H) and polyhydroxyalkanoates (PHA) by R. rubrum from syngas under photoheterotrophic conditions. An adaptive laboratory evolution strategy (ALE) has been carried out to improve the yield of the process. After 200 generations, two evolved strains were selected that showed reduced lag phase and enhanced poly-3-hydroxybutyrate (PHB) and H synthesis compared to the parental strain. Genomic analysis of the photo-adapted (PA) variants showed four genes with single point mutations, including the photosynthesis gene expression regulator PpsR. The proteome of the variants suggested that the adapted variants overproduced H due to a more efficient CO oxidation through the CO-dehydrogenase enzyme complex and confirmed that energy acquisition was enhanced through overexpression of the photosynthetic system and metal cofactors essential for pigment biosynthesis.
红假单胞菌是一种光合紫色非硫细菌,由于其代谢多样性,具有在生物技术应用中复杂废物增值的巨大潜力。本研究调查了红假单胞菌从合成气在光照异养条件下生产氢气(H)和聚羟基烷酸酯(PHA)的情况。已经进行了适应性实验室进化策略(ALE)以提高该过程的产率。经过 200 代,选择了两个进化株,与亲本菌株相比,它们的延迟期缩短,并且增强了聚-3-羟基丁酸酯(PHB)和 H 的合成。对光适应(PA)变体的基因组分析表明,有四个基因发生了单点突变,包括光合作用基因表达调节剂 PpsR。变体的蛋白质组表明,适应变体通过更有效的 CO 氧化通过 CO-脱氢酶酶复合物产生更多的 H,并证实通过过度表达光合作用系统和金属辅因子增强了能量获取,这些辅因子对于色素生物合成是必需的。