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利用液体马铃薯淀粉废料优化培养条件从M10A1生产β-葡聚糖

Production of β-Glucans from M10A1 by Optimizing Culture Conditions Using Liquid Potato Starch Waste.

作者信息

Anchundia Miguel, León-Revelo Gualberto, Santacruz Stalin, Torres Freddy

机构信息

School of Food Engineering, Carchi State Polytechnic University, Tulcán 040101, Ecuador.

School of Agroindustrial Engineering, Universidad Laica Eloy Alfaro de Manabí, Manta 130222, Ecuador.

出版信息

Polymers (Basel). 2025 May 7;17(9):1283. doi: 10.3390/polym17091283.

Abstract

β-glucans from filamentous fungi are important for human health. There is limited research on polysaccharides from filamentous fungi, and no reports have been published regarding the optimization of culture media to produce β-glucans from using liquid waste from potato starch processing. In this regard, the fermentation conditions to produce β-glucans from M10A1 were optimized using the one variable at a time (OVAT) and response surface methodology (RSM). The β-glucans were chemically characterized by determining moisture, nitrogen, protein, fat, ash, and total carbohydrates. The color, molecular weight, β-glucan content, monosaccharide composition, and structural and conformational characteristics were assessed by colorimetry, gel permeation chromatography, high-performance liquid chromatography, and Fourier transform infrared spectroscopy, respectively. The microbial indicators, mesophilic aerobes, molds, yeasts, and were quantified following ISO standard protocols. Optimization indicated that supplementation with 0.8% (/) glucose and ammonium sulfate enhanced heteroglycan production (3254.56 mg/100 g of biomass). The β-glucans exhibited high purity, a light brown color, a molecular weight of 450 kDa, and a composition predominantly consisting of glucose and galactose. These findings suggest that β-glucans from M10A1 could be used for food and health applications.

摘要

丝状真菌的β-葡聚糖对人体健康很重要。关于丝状真菌多糖的研究有限,且尚未有关于利用马铃薯淀粉加工废液生产β-葡聚糖的培养基优化的报道。在这方面,采用一次一个变量法(OVAT)和响应面法(RSM)对从M10A1生产β-葡聚糖的发酵条件进行了优化。通过测定水分、氮、蛋白质、脂肪、灰分和总碳水化合物对β-葡聚糖进行化学表征。分别采用比色法、凝胶渗透色谱法、高效液相色谱法和傅里叶变换红外光谱法评估颜色、分子量、β-葡聚糖含量、单糖组成以及结构和构象特征。按照ISO标准协议对嗜温需氧菌、霉菌、酵母菌和微生物指标进行定量。优化结果表明,添加0.8%(/)葡萄糖和硫酸铵可提高杂聚糖产量(3254.56 mg/100 g生物量)。β-葡聚糖具有高纯度、浅棕色、分子量为450 kDa且主要由葡萄糖和半乳糖组成。这些发现表明,来自M10A1的β-葡聚糖可用于食品和健康应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe8b/12074454/0638ee739088/polymers-17-01283-g001.jpg

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