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Strain and process development for poly(3HB-co-3HP) fermentation by engineered Shimwellia blattae from glycerol

机译:甘油改造的Shimwellia blattae发酵聚(3HB-co-3HP)的菌株和工艺开发

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摘要

Poly(3-hydroxybytyrate-co-3-hydroxypropionate), poly(3HB-co-3HP), is a possible alternative to synthetic polymers such as polypropylene, polystyrene and polyethylene due to its low crystallinity and fragility. We already reported that recombinant strains of Shimwellia blattae expressing 1,3-propanediol dehydrogenase DhaT as well as aldehyde dehydrogenase AldD of Pseudomonas putida KT2442, propionate-CoA transferase Pct of Clostridium propionicum X2 and PHA synthase PhaC1 of Ralstonia eutropha H16 are able to accumulate up to 14.5% (wtPHA/wtCDW) of poly(3-hydroxypropionate), poly(3HP), homopolymer from glycerol as a sole carbon source (Appl Microbiol Biotechnol 98:7409-7422, 2014a). However, the cell density was rather low. In this study, we optimized the medium aiming at a more efficient PHA synthesis, and we engineered a S. blattae strain accumulating poly(3HB-co-3HP) with varying contents of the constituent 3-hydroxypropionate (3HP) depending on the cultivation conditions. Consequently, 7.12, 0.77 and 0.32 gPHA/L of poly(3HB-co-3HP) containing 2.1, 8.3 and 18.1 mol% 3HP under anaerobic/aerobic (the first 24 hours under anaerobic condition, thereafter, aerobic condition), low aeration/agitation (the minimum stirring rate required in medium mixing and small amount of aeration) and anaerobic conditions (the minimum stirring rate required in medium mixing without aeration), respectively, were synthesized from glycerol by the genetically modified S. blattae ATCC33430 strains in optimized culture medium.
机译:聚(3-羟基bytyrate-co-3-羟基丙酸酯),聚(3HB-co-3HP)由于其低结晶度和易碎性,是合成聚合物(例如聚丙烯,聚苯乙烯和聚乙烯)的可能替代品。我们已经报道了表达1,34丙二醇脱氢酶DhaT以及恶臭恶臭假单胞菌KT2442的醛脱氢酶AldD,丙酸梭菌X2的丙酸-CoA转移酶Pct和Ralstonia eutromulate H16的PHA合酶PhaC1的重组菌株Shimwellia blaattae能够累积富营养的H1​​6。 -来自甘油作为唯一碳源的聚(3-羟基丙酸酯),聚(3HP),均聚物的14.5%(wtPHA / wtCDW)(Appl Microbiol Biotechnol 98:7409-7422,2014a)。但是,细胞密度很低。在这项研究中,我们优化了培养基,以实现更有效的PHA合成,并设计了一种S. blattae菌株,该菌株可积累3-羟基丙酸酯(3HP)含量不同的聚(3HB-co-3HP)聚。因此,在厌氧/好氧条件下(厌氧条件下最初的24小时,然后在有氧条件下),低曝气度/曝气量的7.12、0.77和0.32 gPHA / L含2.1、8.3和18.1 mol%3HP的聚(3HB-co-3HP)在优化的培养中,通过转基因的S. blattae ATCC33430菌株从甘油合成了搅拌(培养基混合和少量通气所需的最低搅拌速率)和厌氧条件(培养基中没有曝气的最低搅拌速率)。介质。

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