首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >The Magnesium Concentration in Yeast Extracts Is a Major Determinant Affecting Ethanol Fermentation Performance of Zymomonas mobilis
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The Magnesium Concentration in Yeast Extracts Is a Major Determinant Affecting Ethanol Fermentation Performance of Zymomonas mobilis

机译:酵母提取物中的镁浓度是影响Zymomonas Mobilis的乙醇发酵性能的主要决定因素

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Zymomonas mobilis is a model ethanologenic bacterium for diverse biochemical production. Rich medium (RM) is a complex medium that is routinely used to cultivate Z. mobilis, which contains carbon sources such as glucose, nitrogen sources such as yeast extract (YE), and KH2PO4. Glucose consumption and cell growth of Z. mobilis is usually coupled during ethanol fermentation. However, sometimes glucose was not consumed during the exponential growth phase, and it took extended time for cells to consume glucose and produce ethanol, which eventually reduced the ethanol productivity. In this study, the effects of different nitrogen sources, as well as the supplementation of an additional nitrogen source into RM and minimal medium (MM), on cell growth and glucose consumption of Z. mobilis were investigated to understand the uncoupled cell growth and glucose consumption. Our results indicated that nitrogen sources such as YE from different companies affected cell growth, glucose utilization, and ethanol production. We also quantified the concentrations of major ion elements in different nitrogen sources using the quantitative analytic approach of Inductively Coupled Plasma Optical Emission Spectroscopy (ICP-OES), and demonstrated that magnesium ion in the media affected cell growth, glucose consumption, and ethanol production. The effect of magnesium on gene expression was further investigated using RNA-Seq transcriptomics. Our results indicated that the lack of Mg2+ triggered stress responses, and the expression of genes involved in energy metabolism was reduced. Our work thus demonstrated that Mg2+concentration in nitrogen sources is essential for vigorous cell growth and ethanol fermentation, and the difference of Mg2+concentration in different YE is one of the major factors affecting the coupled cell growth, glucose consumption and ethanol fermentation in Z. mobilis. We also revealed that genes responsive for Mg2+ deficiency in the medium were majorly related to stress responses and energy conservation. The importance of magnesium on cell growth and ethanol fermentation suggests that metal ions should become one of the parameters for monitoring the quality of commercial nitrogen sources and optimizing microbial culture medium.
机译:Zymomonas Mobilis是一种模型素质化菌,用于各种生化生产。富含介质(RM)是一种复杂的介质,其通常用于培养Z.Mobilis,其含有葡萄糖,例如葡萄糖,氮源,例如酵母提取物(YE)和KH2PO4。 Z.Mobilis的葡萄糖消耗和细胞生长通常在乙醇发酵期间偶联。然而,有时葡萄糖在指数增长阶段不会消耗,并且需要延长细胞消耗葡萄糖并产生乙醇,这最终降低了乙醇生产率。在该研究中,研究了不同氮源的影响,以及将另外的氮源的补充成RM和最小培养基(mm),用于Z.Mobilis的细胞生长和葡萄糖消费,以了解未替换的细胞生长和葡萄糖消费。我们的结果表明,来自不同公司的氮源,来自不同公司影响细胞生长,葡萄糖利用和乙醇生产。我们还使用电感耦合等离子体光发射光谱(ICP-OES)的定量分析方法量化了不同氮源中的主要离子元素的浓度,并证明了介质中的镁离子影响了细胞生长,葡萄糖消耗和乙醇生产。使用RNA-SEQ转录组科进一步研究了镁对基因表达的影响。我们的结果表明,缺乏MG2 +触发应力反应,并降低了所涉及能量代谢的基因的表达。因此,我们的作品证明了氮源中的Mg2 +浓度对于剧烈的细胞生长和乙醇发酵至关重要,并且Mg2 +浓度不同YE的差异是影响Z耦合细胞生长,葡萄糖消耗和乙醇发酵的主要因素之一。Mobilis。我们还透露,对培养基中MG2 +缺乏的响应的基因与应力反应和节能有关。镁对细胞生长和乙醇发酵的重要性表明,金属离子应成为监测商业氮源质量和优化微生物培养基的参数之一。

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