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Microbial response to single-cell protein production and brewery wastewater treatment

机译:微生物对单细胞蛋白质生产和啤酒废水处理的反应

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摘要

As global fisheries decline, microbial single-cell protein (SCP) produced from brewery process water has been highlighted as a potential source of protein for sustainable animal feed. However, biotechnological investigation of SCP is difficult because of the natural variation and complexity of microbial ecology in wastewater bioreactors. In this study, we investigate microbial response across a full-scale brewery wastewater treatment plant and a parallel pilot bioreactor modified to produce an SCP product. A pyrosequencing survey of the brewery treatment plant showed that each unit process selected for a unique microbial community. Notably, flow equalization basins were dominated by Prevotella, methanogenesis effluent had the highest levels of diversity, and clarifier wet-well samples were sources of sequences for the candidate bacterial phyla of TM7 and BD1-5. Next, the microbial response of a pilot bioreactor producing SCP was tracked over 1 year, showing that two different production trials produced two different communities originating from the same starting influent. However, SCP production resulted generally in enrichment of several clades of rhizospheric diazotrophs of Alphaproteobacteria and Betaproteobacteria in the bioreactor and even more so in the final product. These diazotrophs are potentially useful as the basis of a SCP product for commercial feed production.
机译:随着全球渔业的减少,由啤酒加工用水产生的微生物单细胞蛋白质(SCP)已被强调为可持续动物饲料的潜在蛋白质来源。然而,由于废水生物反应器中微生物生态的自然变化和复杂性,SCP的生物技术研究非常困难。在这项研究中,我们调查了整个啤酒厂废水处理厂和经过改造以生产SCP产品的并行中试生物反应器的微生物反应。对啤酒厂的焦磷酸测序调查显示,每个单元过程都选择了一个独特的微生物群落。值得注意的是,流量均衡盆地以普雷沃菌为主,甲烷生成废水具有最高水平的多样性,澄清池湿井样品是TM7和BD1-5候选细菌门的序列来源。接下来,对生产SCP的中试生物反应器的微生物反应进行了超过一年的跟踪,表明两个不同的生产试验产生了两个来自同一起始进水的不同社区。但是,SCP的产生通常导致生物反应器中富集了数个Alphaproteobacteria和Betaproteobacteria的根际重氮营养体,甚至在最终产品中也是如此。这些重氮营养菌可能用作商业饲料生产中SCP产品的基础。

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