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Quantitative ‘Omics Analyses of Medium Chain Length Polyhydroxyalkanaote Metabolism in Pseudomonas putida LS46 Cultured with Waste Glycerol and Waste Fatty Acids

机译:废甘油和废脂肪酸培养的恶臭假单胞菌LS46中链长多羟基链烷代谢的定量组学分析

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摘要

Transcriptomes and proteomes of Pseudomonas putida LS46 cultured with biodiesel-derived waste glycerol or waste free fatty acids, as sole carbon sources, were compared under conditions that were either permissive or non-permissive for synthesis of medium chain length polyhydroxyalkanoates (mcl-PHA). The objectives of this study were to elucidate mechanisms that influence activation of biopolymer synthesis, intra-cellular accumulation, and monomer composition, and determine if these were physiologically specific to the carbon sources used for growth of P. putida LS46. Active mcl-PHA synthesis by P. putida LS46 was associated with high expression levels of key mcl-PHA biosynthesis genes and/or gene products including monomer-supplying proteins, PHA synthases, and granule-associated proteins. ‘Omics data suggested that expression of these genes were regulated by different genetic mechanisms in P. putida LS46 cells in different physiological states, when cultured on the two waste carbon sources. Optimal polymer production by P. putida LS46 was primarily limited by less efficient glycerol metabolism during mcl-PHA synthesis on waste glycerol. Mapping the ‘Omics data to the mcl-PHA biosynthetic pathway revealed significant variations in gene expression, primarily involved in: 1) glycerol transportation; 2) enzymatic reactions that recycle reducing equivalents and produce key mcl-PHA biosynthesis pathway intermediates (e.g. NADH/NADPH, acetyl-CoA). Active synthesis of mcl-PHAs was observed during exponential phase in cultures with waste free fatty acids, and was associated with the fatty acid beta-oxidation pathway. A putative Thioesterase in the beta-oxidation pathway that may regulate the level of fatty acid beta-oxidation intermediates, and thus carbon flux to mcl-PHA biosynthesis, was highly up-regulated. Finally, the data suggested that differences in expression of selected fatty acid metabolism and mcl-PHA monomer-supplying enzymes may play a role in determining the monomer composition of mcl-PHA polymers. Understanding the relationships between genome content, gene and gene product expression, and how these factors influence polymer synthesis, will aid in optimization of mcl-PHA production by P. putida LS46 using biodiesel waste streams.
机译:在允许或不允许合成中等链长的多羟基链烷酸酯(mcl-PHA)的条件下,比较了用生物柴油衍生的废甘油或废游离脂肪酸作为唯一碳源培养的恶臭假单胞菌LS46的转录组和蛋白质组。这项研究的目的是阐明影响生物聚合物合成,细胞内积累和单体组成激活的机制,并确定这些机制是否对恶臭假单胞菌LS46的生长所用的碳源具有生理特异性。恶臭假单胞菌LS46的主动mcl-PHA合成与关键mcl-PHA生物合成基因和/或包括单体供应蛋白,PHA合成酶和颗粒相关蛋白的基因产物的高表达水平相关。 ‘Omics的数据表明,当在两种废碳源上培养时,这些基因的表达受不同生理状态的恶臭假单胞菌LS46细胞中不同遗传机制的调节。恶臭假单胞菌LS46的最佳聚合物生产主要受到废甘油在mcl-PHA合成过程中甘油代谢效率较低的限制。通过将'Omics数据映射到mcl-PHA生物合成途径,发现基因表达存在显着变化,主要涉及:1)甘油运输; 2)循环还原当量并产生关键的mcl-PHA生物合成途径中间体(例如NADH / NADPH,乙酰辅酶A)的酶促反应。在含有废脂肪酸的培养过程中,在指数期观察到了mcl-PHA的主动合成,并且与脂肪酸β-氧化途径有关。在β-氧化途径中可能调节脂肪酸β-氧化中间体水平的推定硫酯酶,因此到mcl-PHA生物合成的碳通量被高度上调。最后,数据表明所选脂肪酸代谢和提供mcl-PHA单体的酶的表达差异可能在确定mcl-PHA聚合物的单体组成中起作用。了解基因组含量,基因和基因产物表达之间的关系以及这些因素如何影响聚合物合成,将有助于优化恶臭假单胞菌LS46使用生物柴油废物流产生的mcl-PHA。

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