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利用深海水进行酵母发酵,以通过蛋白质组学调控提高富含矿物质的生物质产量和发酵调控。

Utilizing deep ocean water in yeast fermentation for enhanced mineral-rich biomass production and fermentative regulation by proteomics modulation.

作者信息

Liu Chin-Feng, Zhang Xuan-Fang, Yu Tsai-Luen, Lee Chun-Lin

机构信息

Continuing Education Program of Food Biotechnology Applications, National Taiwan University, Taitung, Taiwan, ROC.

Department of Life Science, National Taitung University, 369, Sec. 2, University Rd., Taitung, 95092, Taitung, Taiwan, ROC.

出版信息

Heliyon. 2024 May 10;10(10):e31031. doi: 10.1016/j.heliyon.2024.e31031. eCollection 2024 May 30.

Abstract

Deep Ocean Water (DOW) is rich in minerals and serves as a natural source of nutrients. However, due to the inorganic nature of these minerals, cultivating yeast in DOW could aid in the fermentation process, and simultaneously, the yeast can assimilate the minerals from DOW, resulting in a mineral-enriched yeast biomass. Focusing on three DOW sources off the eastern coast of Taiwan (TT-1, HL-1, HL-2), we fermented various yeast strains of . Therefore, this study investigates the effects of DOW on yeast growth, alcohol dehydrogenase activity, and the biological absorption of mineral ions by the yeast. Additionally, this research employs two-dimensional electrophoresis techniques to examine how the absorbed minerals influence the regulation of yeast proteins, thereby affecting biomass and metabolism. In the result, BCRC 21689 demonstrated a remarkable ability to bio-absorb minerals such as magnesium, calcium, potassium, and zinc from DOW, enhancing its growth and fermentation performance. Proteomic analysis revealed significant shifts in the expression of 21 proteins related to glycolytic and energy metabolism, alcohol metabolism, and growth regulation, all influenced by DOW's mineral-rich environment. This indicates that DOW's mineral content is a key factor in upregulating essential enzymes in glycolytic metabolism and alcohol dehydrogenase. An increase in proteins involved in synthesis and folding processes was also observed, leading to a substantial increase in yeast biomass. This study underscores the potential of DOW as a natural enhancer in yeast fermentation processes, enriching the yeast with diverse minerals and modulating proteomic expression to optimize yeast growth and fermentation.

摘要

深层海水(DOW)富含矿物质,是营养物质的天然来源。然而,由于这些矿物质的无机性质,在深层海水中培养酵母有助于发酵过程,同时,酵母可以吸收深层海水中的矿物质,从而产生富含矿物质的酵母生物量。以台湾东海岸的三种深层海水来源(TT-1、HL-1、HL-2)为研究对象,我们对各种酵母菌株进行了发酵。因此,本研究探讨了深层海水对酵母生长、乙醇脱氢酶活性以及酵母对矿质离子的生物吸收的影响。此外,本研究采用二维电泳技术来研究吸收的矿物质如何影响酵母蛋白质的调控,进而影响生物量和代谢。结果表明,BCRC 21689具有从深层海水中生物吸收镁、钙、钾和锌等矿物质的显著能力,提高了其生长和发酵性能。蛋白质组学分析显示,与糖酵解和能量代谢、酒精代谢以及生长调控相关的21种蛋白质的表达发生了显著变化,这些变化均受深层海水富含矿物质环境的影响。这表明深层海水的矿物质含量是上调糖酵解代谢和乙醇脱氢酶中关键酶的关键因素。还观察到参与合成和折叠过程的蛋白质增加,导致酵母生物量大幅增加。本研究强调了深层海水作为酵母发酵过程中天然增强剂的潜力,它能使酵母富含多种矿物质,并调节蛋白质组表达以优化酵母生长和发酵。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0205/11109828/0db84d25cefa/gr1.jpg

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