Increasing lipid production from Zygosaccharomyces siamensis AP1 in molasses substrate using sequencing batch method

Ilmi, Miftahul and Badrani, Anugrah and Fauziyah, Annisa (2023) Increasing lipid production from Zygosaccharomyces siamensis AP1 in molasses substrate using sequencing batch method. Preparative Biochemistry and Biotechnology, 53 (3). 288 – 296-296. ISSN 10826068

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Abstract

Yeasts are considered potential lipid producers to substitute oil-producing plants. Previous study succeeded in isolating Zygosaccharomyces siamensis AP1 from Indonesia which was able to accumulate 19 lipid. The strain, however, was not optimized for high cell density growth which is required for industry-level. In this study, efforts were made to increase cell density and lipid production of Z. siamensis AP1 using molasses as carbon source and implementing sequencing batch method. The yeast was grown in various combinations of carbon and nitrogen sources. The C:N ratio of the best substrate combination is then optimized. Afterwards, batch and sequencing batch methods were applied in fermentation with various concentrations (20–480 g/L) of molasses. The results show that lipid produced using molasses was slightly higher compared to using glucose, 0.21 g/L and 0.19 g/L respectively, with the same nitrogen source. Combination of molasses and ammonium sulfate with C:N ratio 70:1 gave the highest lipid (0.28 g/L). Sequencing batch able to increase cell density 2.4-fold compared to batch method. This study was the first to report that sequencing batch application with molasses as carbon source can increase lipid production from Z. siamensis. Further study to optimize medium composition for sequencing batch is suggested. © 2022 Taylor & Francis Group, LLC.

Item Type: Article
Additional Information: Cited by: 2
Uncontrolled Keywords: Carbon; Lipids; Molasses; Nitrogen; Saccharomyces cerevisiae; carbon; lipid; molasses; nitrogen; chemistry; Saccharomyces cerevisiae
Subjects: Biology
Divisions: Faculty of Biology > Doctoral Program in Biology
Depositing User: Rusna Nur Aini Aini
Date Deposited: 17 Dec 2024 01:12
Last Modified: 17 Dec 2024 01:12
URI: https://ir.lib.ugm.ac.id/id/eprint/9647

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