Screening of Non-Conventional Yeasts on Low-Cost Carbon Sources and Valorization of Mizithra Secondary Cheese Whey for Metabolite Production.

IF 2.7 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
BioTech Pub Date : 2025-04-01 DOI:10.3390/biotech14020024
Gabriel Vasilakis, Rezart Tefa, Antonios Georgoulakis, Dimitris Karayannis, Ioannis Politis, Seraphim Papanikolaou
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引用次数: 0

Abstract

The production of microbial metabolites such as (exo)polysaccharides, lipids, or mannitol through the cultivation of microorganisms on sustainable, low-cost carbon sources is of high interest within the framework of a circular economy. In the current study, two non-extensively studied, non-conventional yeast strains, namely, Cutaneotrichosporon curvatus NRRL YB-775 and Papiliotrema laurentii NRRL Y-3594, were evaluated for their capability to grow on semi-defined lactose-, glycerol-, or glucose-based substrates and produce value-added metabolites. Three different nitrogen-to-carbon ratios (i.e., 20, 80, 160 mol/mol) were tested in shake-flask batch experiments. Pretreated secondary cheese whey (SCW) was used for fed-batch bioreactor cultivation of P. laurentii NRRL Y-3594, under nitrogen limitation. Based on the screening results, both strains can grow on low-cost substrates, yielding high concentrations of microbial biomass (>20 g/L) under nitrogen-excess conditions, with polysaccharides comprising the predominant component (>40%, w/w, of dry biomass). Glucose- and glycerol-based cultures of C. curvatus promote the secretion of mannitol (13.0 g/L in the case of glucose, under nitrogen-limited conditions). The lipids (maximum 2.2 g/L) produced by both strains were rich in oleic acid (≥40%, w/w) and could potentially be utilized to produce second-generation biodiesel. SCW was nutritionally sufficient to grow P. laurentii strain, resulting in exopolysaccharides secretion (25.6 g/L), along with dry biomass (37.9 g/L) and lipid (4.6 g/L) production.

低成本碳源的非常规酵母筛选及Mizithra次级奶酪乳清代谢产物的生产
在循环经济的框架内,通过在可持续、低成本的碳源上培养微生物来生产微生物代谢物,如(外)多糖、脂质或甘露醇,具有很高的兴趣。在目前的研究中,研究人员评估了两种未经广泛研究的非传统酵母菌株,即Cutaneotrichosporon curvatus NRRL YB-775和Papiliotrema laurentii NRRL Y-3594,以评估它们在半确定的乳糖、甘油或葡萄糖基底物上生长并产生增值代谢物的能力。在摇瓶间歇实验中测试了三种不同的氮碳比(即20、80、160 mol/mol)。采用经预处理的二次奶酪乳清(SCW),在氮限制条件下,对laurentii P. NRRL Y-3594进行间歇进料生物反应器培养。根据筛选结果,这两种菌株都可以在低成本基质上生长,在氮过量条件下产生高浓度的微生物生物量(>20 g/L),其中多糖占主要成分(>40%,w/w,干生物量)。以葡萄糖和甘油为基础的弧菌培养可促进甘露醇的分泌(在氮限制条件下,葡萄糖为13.0 g/L)。两菌株产的油脂(最大2.2 g/L)均富含油酸(≥40%,w/w),具有生产第二代生物柴油的潜力。SCW具有足够的营养,可以使laurentii菌株分泌25.6 g/L的胞外多糖,产生37.9 g/L的干生物量和4.6 g/L的脂质。
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
BioTech
BioTech Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
3.70
自引率
0.00%
发文量
51
审稿时长
11 weeks
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