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利用粗糖作为经济高效的底物,对花粉串珠霉突变体-58进行菌株改良以提高赤藓糖醇产量。

Strain improvement for enhanced erythritol production by Moniliella pollinis Mutant-58 using jaggery as a cost-effective substrate.

作者信息

Khatape Anil B, Rangaswamy Vidhya, Dastager Syed G

机构信息

NCIM-Resource Center, Biochemical Sciences Division, CSIR-National Chemical Laboratory, -411008, Pune, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

出版信息

Int Microbiol. 2024 Apr;27(2):581-596. doi: 10.1007/s10123-023-00411-8. Epub 2023 Jul 31.

Abstract

Erythritol has been produced by various microorganisms including Yarrowia, Moniliella, Aureobasidium, and Candida strains. Due to its relatively high price, erythritol sweetener is used lesser than other polyols despite having many advantages. Therefore, in this study, Moniliella pollinis strain was improved for erythritol production by chemical mutagenesis and subsequently screening for cost-effective carbon sources for the enhanced erythritol yield. M. pollinis was subjected to N-methyl N-nitro N-nitroso guanidine (NTG), ethyl methyl sulfonate (EMS), and UV mutagenesis for improved erythritol production. The fmutant strains were evaluated for enhanced erythritol production medium optimization by using different carbon substrates at the shake flask level. To enhance the production of erythritol and statistical media, optimization was carried out using a central composite design (CCD). Among 198 isolated mutants, Mutant-58 strain generated by EMS mutagenesis was selected for further assessment. The Mutant-58 strain showed significant morphological changes as compared to the parent strain. Furthermore, statistically optimized media composition resulted in the higher production of erythritol (91.2 ± 3.4 g/L) with a yield of 40.7 ± 3.4 % in shake flask experiments. The optimized medium composition for erythritol production constitutes (g/L) 225 jaggery, 4.4 yeast extract (YE), 4.4 KHPO, 0.31 MgSO, and pH 5.5. The present study demonstrated strain improvement, media, and process optimization resulting in a 30% increase in the erythritol production in the Mutant-58 as compared to the parent strain. This is also the first instance where jaggery has been used as a cost-effective carbon source alternative to glucose for industrial-scale erythritol production.

摘要

赤藓糖醇已由多种微生物生产,包括解脂耶氏酵母、拟丝孢酵母、 Aureobasidium 和假丝酵母菌株。由于其价格相对较高,尽管赤藓糖醇甜味剂有许多优点,但使用量仍低于其他多元醇。因此,在本研究中,通过化学诱变改良了拟丝孢酵母菌株以生产赤藓糖醇,并随后筛选出具有成本效益的碳源以提高赤藓糖醇产量。对拟丝孢酵母进行 N-甲基-N-硝基-N-亚硝基胍(NTG)、甲基磺酸乙酯(EMS)和紫外线诱变以提高赤藓糖醇产量。通过在摇瓶水平使用不同的碳底物,对突变菌株进行评估以优化赤藓糖醇生产培养基。为了提高赤藓糖醇产量并进行统计培养基优化,使用中心复合设计(CCD)进行了实验。在198个分离的突变体中,选择了由EMS诱变产生的突变体-58菌株进行进一步评估。与亲本菌株相比,突变体-58菌株表现出明显的形态变化。此外,经过统计优化的培养基组成在摇瓶实验中使赤藓糖醇产量更高(91.2±3.4 g/L),产率为40.7±3.4%。用于赤藓糖醇生产的优化培养基组成(g/L)为225粗糖、4.4酵母提取物(YE)、4.4 KHPO、0.31 MgSO,pH 5.5。本研究表明,菌株改良、培养基和工艺优化使突变体-58的赤藓糖醇产量比亲本菌株提高了30%。这也是首次将粗糖用作工业规模生产赤藓糖醇的具有成本效益的葡萄糖替代碳源。

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