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The relationship between mixed microbial culture composition and PHA production performance from fermented molasses

机译:发酵糖蜜混合微生物培养物成分与PHA生产性能的关系

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Polyhydroxyalkanoates (PHAs) are polyesters that can be produced from industrial wastewater or surplus products by mixed microbial cultures (MMC). To optimise PHA production by MMCs, the link between the microbial structure and function of these enrichments must be better established. This study investigates, for the first time, the impact of operational changes on the microbial community and the associated process performance of PHA producing MMCs. It was found that a PHA producing community fed with fermented molasses was dominated by a combination of Azoarcus, Thauera and Paracoccus, where the former two groups were present in highest abundance. Dominance of either Thauera or Azoarcus seemed to be determined by the organic loading rate imposed in the selection reactor. While higher Azoarcus enrichments led to higher PHA production yields and lower biomass growth yields as compared to Thauera, the Thauera abundance was strongly linked to higher hydroxyvalerate (HV) fractions. Paracoccus abundance was correlated with a lower PHA production capacity as compared to Azoarcus, and produced lower HV fractions than Thauera and Azoarcus. The findings of this study suggest that MMCs targeting the enrichment of Azoarcus as the primary biomass fraction with Thauera as a minor fraction lead to optimal specific PHA production and polymers with high HV content, which is likely to improve their mechanical properties.
机译:聚羟基链烷酸酯(PHA)是聚酯,可以通过混合微生物培养(MMC)从工业废水或剩余产品中生产。为了优化MMC生产PHA,必须更好地建立微生物结构与这些浓缩功能之间的联系。这项研究首次调查了操作变化对微生物群落的影响以及生产PHA的MMC的相关过程性能。研究发现,以发酵糖蜜为食的PHA生产社区主要由偶氮固氮菌,Thauera和副球菌共同组成,其中前两组的丰度最高。索拉(Tauera)或固氮菌(Azoarcus)的优势似乎取决于选择反应器中施加的有机负载率。尽管与Thauera相比,较高的固氮菌浓缩可导致较高的PHA产量和较低的生物量增长产量,但Thauera的丰度与较高的羟基戊酸酯(HV)组分密切相关。与Azoarcus相比,副球菌的丰度与较低的PHA生产能力相关,并且产生的HV分数低于Thauera和Azoarcus。这项研究的发现表明,针对富集作为主要生物量组分的偶氮类(Azoarcus)和拟南芥(Thauera)作为次要组分的MMC可以产生最佳的特定PHA生产和高HV含量的聚合物,这可能会改善其机械性能。

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