Montano-Herrera Liliana, Laycock Bronwyn, Werker Alan, Pratt Steven
School of Chemical Engineering, University of Queensland, St Lucia QLD 4072, Australia.
Veolia Water Technologies AB-AnoxKaldnes, Klosterängsvägen 11A SE-226 47 Lund, Sweden.
Bioengineering (Basel). 2017 Mar 7;4(1):20. doi: 10.3390/bioengineering4010020.
This paper presents a systematic investigation into monomer development during mixed culture Polyhydroxyalkanoates (PHA) accumulation involving concurrent active biomass growth and polymer storage. A series of mixed culture PHA accumulation experiments, using several different substrate-feeding strategies, was carried out. The feedstock comprised volatile fatty acids, which were applied as single carbon sources, as mixtures, or in series, using a fed-batch feed-on-demand controlled bioprocess. A dynamic trend in active biomass growth as well as polymer composition was observed. The observations were consistent over replicate accumulations. Metabolic flux analysis (MFA) was used to investigate metabolic activity through time. It was concluded that carbon flux, and consequently copolymer composition, could be linked with how reducing equivalents are generated.
本文对混合培养聚羟基脂肪酸酯(PHA)积累过程中的单体发育进行了系统研究,该过程涉及活性生物质的同时生长和聚合物储存。采用几种不同的底物进料策略进行了一系列混合培养PHA积累实验。原料包括挥发性脂肪酸,它们作为单一碳源、混合物或按顺序使用分批补料按需控制生物过程作为碳源。观察到活性生物质生长以及聚合物组成的动态趋势。在重复积累过程中观察结果一致。代谢通量分析(MFA)用于研究随时间变化的代谢活性。得出的结论是,碳通量以及共聚物组成可以与还原当量的产生方式联系起来。