Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands.
Biotechnol Bioeng. 2011 Sep;108(9):2022-35. doi: 10.1002/bit.23148. Epub 2011 May 31.
In this study we investigated the use of lactate and a lactate/acetate mixture for enrichment of poly-3-hydroxybutyrate (PHB) producing mixed cultures. The mixed cultures were enriched in sequencing batch reactors (SBR) that established a feast-famine regime. The SBRs were operated under conditions that were previously shown to enable enrichment of a superior PHB producing strain on acetate (i.e., 12 h cycle length, 1 day SRT and 30°C). Two new mixed cultures were eventually enriched from activated sludge. The mixed culture enriched on lactate was dominated by a novel gammaproteobacterium. This enrichment can accumulate over 90 wt% PHB within 6 h, which is currently the best result reported for a bacterial culture in terms of the final PHB content and the biomass specific PHB production rate. The second mixed culture enriched on a mixture of acetate and lactate can produce up to 84 wt% PHB in just over 8 h. The predominant bacterial species in this culture were Plasticicumulans acidivorans and Thauera selenatis, which have both been reported to accumulate large amounts of PHB. The data suggest that P. acidivorans is a specialist on acetate conversion, whereas Thauera sp. is a specialist on lactate conversion. The main conclusion of this work is that the use of different substrates has a direct impact on microbial composition, but has no significant effect on the functionality of PHB production process.
在这项研究中,我们研究了使用乳酸盐和乳酸盐/乙酸盐混合物来富集聚 3-羟基丁酸 (PHB) 产生的混合培养物。混合培养物在分批序批式反应器 (SBR) 中进行了富集,该反应器建立了饱食-饥饿的培养模式。SBR 的操作条件与先前证明能够在乙酸盐上富集优越 PHB 产生菌株的条件相同(即 12 h 周期长度、1 天 SRT 和 30°C)。最终从活性污泥中富集了两种新的混合培养物。富集乳酸盐的混合培养物主要由一种新型的γ变形菌组成。该富集物可以在 6 小时内积累超过 90wt%的 PHB,这是目前报道的细菌培养物在最终 PHB 含量和生物质特异性 PHB 生产速率方面的最佳结果。在混合物上富集的第二种混合培养物可以在 8 小时以上的时间内生产高达 84wt%的 PHB。该培养物中主要的细菌物种是 Plasticicumulans acidivorans 和 Thauera selenatis,它们都被报道可以积累大量的 PHB。数据表明,P. acidivorans 是一种专门用于乙酸盐转化的专家,而 Thauera sp. 则是一种专门用于乳酸盐转化的专家。这项工作的主要结论是,使用不同的底物会直接影响微生物的组成,但对 PHB 生产过程的功能没有显著影响。