应用多种策略来增强由工程化Saccharomyces cerevisiae增强烯酸生物合成
Xu Cheng1, Yaru Pang1, Yali Ban1
1Key Laboratory of Medical Molecule Science and Pharmaceutical Engineering, Ministry of Industry and Information Technology, Institute of Biochemical Engineering, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 100081, China.
Bioresource technology
|April 19, 2024
概括
工程细胞工厂现在生产高水平的油酸,这是一个有价值的化合物. 这一突破克服了以前的低产量,为植物提取提供了一个可持续的替代方案.
科学领域:
- 生物技术是生物技术.
- 代谢工程是代谢工程.
- 合成生物学 合成生物学
背景情况:
- 奥莱阿诺酸是一种有价值的化合物,在制药,农业,化品和食品中具有应用.
- 目前的工程细胞工厂产油酸的产量很低,因此需要依赖传统的植物提取方法.
研究的目的:
- 设计一个高效的细胞工厂,以增加酸的生产.
- 为了克服微生物烯酸合成中低产量的局限性.
主要方法:
- 使用可诱导的促进剂进行调节的速率限制步骤.
- 在酸合成途径中增强关键基因的表达.
- 扩大了前体池,重构了代谢途径,并构建了双胞胎菌株.
主要成果:
- 在100升生物反应器中实现了4.07g/L的烯酸生产纪录.
- 通过多策略的方法,成功地协调了细胞生长与高油酸生产.
结论:
- 开发的多策略方法显著提高了工程细胞工厂的烯酸生产.
- 这种工程菌株代表了高效和可持续的烯酸来源,超越了传统的提取方法.
相关概念视频
Microbes in Food Production
407
Microbial fermentation is central to food biotechnology, enhancing flavor, texture, preservation, and stability. Fermentative microorganisms metabolize carbohydrates into organic acids, alcohols, and other metabolites that inhibit spoilage organisms and improve digestibility while contributing distinctive sensory qualities.In baking, amylases naturally present in flour hydrolyze starch into monosaccharides such as glucose, which Saccharomyces cerevisiae ferments anaerobically. Through...
407
Microbes in Beverage Production
300
Alcoholic beverages such as wine, beer, and spirits are the products of microbial fermentation processes that transform simple sugars into ethanol and a wide array of complex flavor compounds. These transformations rely on the metabolic activities of specific yeasts and bacteria, which are selected and controlled to yield the desired beverage characteristics.Wine Fermentation and MaturationWine production begins with the crushing of grapes to release juice and pulp, forming a must that is...
300
Bioreactor Controls-III
70
Strain improvement is a foundational strategy in industrial microbiology aimed at maximizing microbial productivity, particularly because natural isolates typically yield commercially valuable products in very low concentrations. Although optimizing the culture medium and environmental conditions can improve yields, these adjustments are inherently limited by the organism’s genetic potential. As a result, the focus shifts toward genetic modifications to enhance biosynthetic capacity. The...
70
Upstream Processing
102
Upstream processing represents a critical phase in biomanufacturing, wherein biological systems such as microorganisms, mammalian cells, or insect cells are cultivated to produce therapeutic proteins, vaccines, enzymes, or other biologically derived products. This phase encompasses all steps from the selection and genetic manipulation of the production organism to the cultivation of cells in bioreactors under tightly controlled environmental conditions.Host Selection and Genetic OptimizationThe...
102
Production of Organic Acids
111
Lactic acid, an important organic acid extensively applied in food, pharmaceutical, and biodegradable polymer industries, is primarily produced via microbial fermentation. This method is favored over chemical synthesis due to its environmental sustainability and capacity for enantiomerically pure product formation. Among various microbial processes, the fermentation of starch-based substrates stands out due to the abundance and renewability of raw materials like corn and potatoes.Hydrolysis of...
111
Production of Antibiotics
281
Penicillin, one of the earliest and most widely used antibiotics, is produced industrially by the filamentous fungus Penicillium chrysogenum. Large stirred-tank bioreactors ranging from tens to hundreds of thousands of liters maintain tightly controlled temperature, pH, and dissolved oxygen conditions to support fungal metabolism and maximize antibiotic yield. Penicillin is a secondary metabolite, synthesized primarily during the stationary growth phase, which requires a carefully managed...
281


