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首页> 外文期刊>Biotechnology for Biofuels >Efficient bioproduction of 5-aminolevulinic acid, a promising biostimulant and nutrient, from renewable bioresources by engineered Corynebacterium glutamicum
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Efficient bioproduction of 5-aminolevulinic acid, a promising biostimulant and nutrient, from renewable bioresources by engineered Corynebacterium glutamicum

机译:通过工程化的棒状杆菌谷氨酰胺,高效生物化5-氨基乙酰丙烯酸,有前途的生物血糖蛋白和营养素。

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5-Aminolevulinic acid (5-ALA) is a promising biostimulant, feed nutrient, and photodynamic drug with wide applications in modern agriculture and therapy. Considering the complexity and low yield of chemical synthesis methods, bioproduction of 5-ALA has drawn intensive attention recently. However, the present bioproduction processes use refined glucose as the main carbon source and the production level still needs further enhancement. To lay a solid technological foundation for large-scale commercialized bioproduction of 5-ALA, an industrial workhorse Corynebacterium glutamicum was metabolically engineered for high-level 5-ALA biosynthesis from cheap renewable bioresources. After evaluation of 5-ALA synthetases from different sources, the 5-ALA biosynthetic pathway and anaplerotic pathway were rebalanced by regulating intracellular activities of 5-ALA synthetase and phosphoenolpyruvate carboxylase. The engineered biocatalyst produced 5.5?g/L 5-ALA in shake flasks and 16.3?g/L in 5-L bioreactors with a one-step fermentation process from glucose. To lower the cost of feedstock, cheap raw materials were used to replace glucose. Enzymatically hydrolyzed cassava bagasse was proven to be a perfect alternative to refined sugars since the final 5-ALA titer further increased to 18.5?g/L. Use of corn starch hydrolysate resulted in a similar 5-ALA production level (16.0?g/L) with glucose, whereas use of beet molasses caused seriously inhibition. The results obtained here represent a new record of 5-ALA bioproduction. It is estimated that replacing glucose with cassava bagasse will reduce the carbon source cost by 90.1%. The high-level biosynthesis of 5-ALA from cheap bioresources will brighten the prospects for industrialization of this sustainable and environment-friendly process. The strategy for balancing metabolic flux developed in this study can also be used for improving the bioproduction of other value-added chemicals.
机译:5-氨基乙酰丙酸(5-ALA)是具有广泛应用在现代农业和治疗中具有广泛应用的有前途的生物硫化剂,饲料营养素和光动力药物。考虑到化学合成方法的复杂性和低产量,最近5艾拉的生物制备率升高。然而,目前的生物生产过程使用精制葡萄糖作为主要碳源,生产水平仍需要进一步提高。为了为5艾拉的大规模商业化生物生产奠定稳固的技术基础,工业主饰有柔软的谷氨酰胺属植物棒状杆菌在廉价可再生辅导源的高水平5艾拉生物合成中成了代谢。在评估来自不同来源的5 alA合成酶后,通过调节5 - ALA合成酶和磷酸丙酮酸羧化酶的细胞内活性来重新平衡5-Ala生物合成途径和翼状化途径。工程化生物催化剂在摇瓶中产生5.5?G / L 5-ALA,在5-L生物反应器中产生16.3〜1次,具有来自葡萄糖的一步发酵过程。为了降低原料的成本,使用廉价的原料代替葡萄糖。酶促水解的Cassava Bagasse被证明是一种完美的完美替代方案,因为最终的5 - Ala滴度进一步增加到18.5℃。使用玉米淀粉水解产物导致类似的5 - Ala生产水平(16.0〜11 / L),而甜菜糖蜜导致严重抑制。这里获得的结果代表了5-Ala BioProduction的新记录。据估计,用Cassava Bagasse取代葡萄糖将使碳源成本降低90.1%。来自廉价生物资源的5级生物合成将使这种可持续和环保过程的工业化前景提升。该研究中开发的衡量代谢助焊剂的策略也可用于改善其他增值化学品的生物处理。

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