Optimization of erythritol production through fermentation using molasses as carbon source.

IF 1.4 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Acta biochimica Polonica Pub Date : 2025-01-08 eCollection Date: 2024-01-01 DOI:10.3389/abp.2024.14000
Riahna Kembaren, Arli Aditya Parikesit, Jocelyn Nataniel, Nethania Angeline Dharmawan, Charlivo Mikaichi Dungus, Priscilla Angelique, Solmaz Aslanzadeh
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引用次数: 0

Abstract

Erythritol is a beneficial sugar alcohol that can be used as a sugar substitute for diabetic patients. Erythritol is a bioproduct produced by microorganisms as a response to high osmotic pressure and stress in the growth medium. High concentrations of carbon source substrate can increase the osmotic pressure and provide more nutrient supply for yeast growth and metabolism. Aside from that, an optimal carbon-to-nitrogen (C/N) ratio can also make the erythritol conversion pathway more favorable. Therefore, this research aims to determine the optimal concentrations of molasses as the carbon source, yeast extract as the nitrogen source, and the optimal carbon-to-nitrogen (C/N) ratio to achieve the highest erythritol productivity. The research also seeks to optimize NaCl concentrations and pH while comparing batch and fed-batch fermentation systems to determine which produces a higher erythritol yield. One-Factor-at-A-Time (OFAT) method was used to identify optimal production conditions. The study found that the highest erythritol concentration, 17.48 ± 0.86 g/L, was achieved using 200 g/L of molasses, 7 g/L of yeast extract (200/7), and 25 g/L of NaCl, with a yield mass of 0.262 ± 0.00 g/g and a volumetric productivity of 0.095 ± 0.021 g/Lh. The pH optimization revealed that the best erythritol production occurred within a pH of 5. Furthermore, fed-batch fermentation significantly increased erythritol concentration to 26.52 ± 1.61 g/L, with a yield mass of 0.501 ± 0.032 g/g and a volumetric productivity of 0.158 ± 0.01 g/Lh. These findings emphasize the importance of optimizing carbon source, nitrogen source and NaCl concentration, pH, and fermentation systems, particularly highlighting the benefits of fed-batch fermentation in maximizing erythritol production. These findings provide a solid foundation for improving erythritol yields for industrial applications.

以糖蜜为碳源发酵生产赤藓糖醇的优化。
赤藓糖醇是一种有益的糖醇,可作为糖尿病患者的代用糖。赤藓糖醇是微生物对生长介质中的高渗透压和应激反应而产生的一种生物产物。高浓度的碳源底物可以提高渗透压力,为酵母的生长和代谢提供更多的营养供应。除此之外,最佳的碳氮比(C/N)也有利于赤藓糖醇的转化途径。因此,本研究旨在确定糖蜜为碳源、酵母浸膏为氮源的最佳浓度和最佳碳氮比(C/N),以实现最高的赤藓糖醇产率。该研究还试图优化NaCl浓度和pH值,同时比较分批和补料分批发酵系统,以确定哪种发酵系统能产生更高的赤藓糖醇产量。采用单因素单次法(OFAT)确定最佳生产条件。研究发现,当糖蜜用量为200 g/L、酵母浸膏用量为7 g/L(200/7)、NaCl用量为25 g/L时,赤藓糖醇浓度最高,为17.48±0.86 g/L,产率为0.262±0.00 g/g,体积产率为0.095±0.021 g/Lh。pH优化结果表明,赤藓糖醇的最佳产率出现在pH为5的条件下。分批补料发酵显著提高赤藓糖醇浓度为26.52±1.61 g/L,产量质量为0.501±0.032 g/g,体积产率为0.158±0.01 g/Lh。这些发现强调了优化碳源、氮源、NaCl浓度、pH和发酵系统的重要性,特别强调了补料分批发酵在最大化赤藓糖醇产量方面的好处。这些发现为提高赤藓糖醇的工业应用收率提供了坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta biochimica Polonica
Acta biochimica Polonica 生物-生化与分子生物学
CiteScore
2.40
自引率
0.00%
发文量
99
审稿时长
4-8 weeks
期刊介绍: Acta Biochimica Polonica is a journal covering enzymology and metabolism, membranes and bioenergetics, gene structure and expression, protein, nucleic acid and carbohydrate structure and metabolism.
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