微生物β-mannanases的研究和应用进展:一个迷你回顾
Ping Wang1, Xiaohui Pei2, Weiqiang Zhou3
1School of Biological Science and Technology, University of Jinan, Jinan, 250022, PR China.
World journal of microbiology & biotechnology
|April 17, 2024
概括
微生物β-曼南酶,即降解曼南的酶,是多功能生物催化剂. 本综述涵盖了它们的起源,特性和各种工业应用,强调了这些重要的酶的未来研究方向.
科学领域:
- 生物化学 生物化学
- 酶学 是一种酶学.
- 微生物学 微生物学
背景情况:
- 曼南是植物组织中半纤维素的关键成分.
- β-曼酶是主要负责分解曼中β-1,4-结合的曼诺基基键的酶.
- 微生物是β-曼酶酶的丰富来源.
研究的目的:
- 审查微生物β-mannanases的起源和分类.
- 讨论这些酶的酶性质,分子修饰和固定.
- 概述微生物β-mannanases的各种工业应用和未来研究方向.
主要方法:
- 关于微生物β-曼酶研究的文献综述.
- 对酶性质和催化活性进行分析.
- 探索工业应用和生物技术潜力.
主要成果:
- 微生物β-曼酶具有广泛的pH值和温度稳定性.
- 这些酶在制药,动物料,纸和生物炼油厂中具有重大潜力.
- 各种酶修饰和固定化策略提高了它们的工业效用.
结论:
- 微生物β-曼酶是具有既定和新兴工业应用的高度多功能酶.
- 对酶工程和应用开发的进一步研究将扩大它们的效用.
- 了解这些酶的起源和特性对于优化它们的使用至关重要.
相关概念视频
Environmental Applications of Microorganisms
1.5K
Microorganisms play a pivotal role in maintaining ecosystem balance by recycling essential elements such as carbon, nitrogen, and phosphorus, as well as supporting processes like bioremediation, wastewater treatment, and biofuel production.Microbes in Elemental CyclesIn the carbon cycle, microorganisms decompose organic matter, releasing carbon dioxide via aerobic respiration. This carbon dioxide is subsequently used by photosynthetic organisms to synthesize organic compounds, closing the...
1.5K
Microbial Corrosion
112
Microbiologically Influenced Corrosion (MIC) is a significant form of material degradation caused by the metabolic activities of microorganisms. This phenomenon poses substantial challenges across various industries, including oil and gas, maritime, and water treatment sectors.MIC occurs when microorganisms, such as bacteria, archaea, and fungi, colonize metal surfaces, forming biofilms that alter the local electrochemical environment. These biofilms can lead to the production of corrosive...
112
Microbes in Food Production
409
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...
409
Microbes in the Production of Fermented Foods
340
Lactic acid bacteria (LAB) and molds are instrumental in fermenting plant-based foods to enhance preservation and ensure year-round availability. These microbial processes convert plant carbohydrates into organic acids and other metabolites that inhibit spoilage organisms and contribute to the sensory qualities of the final product.In sauerkraut production, cabbage goes through a microbial succession that starts with cocci such as Leuconostoc mesenteroides. These microbes begin fermentation by...
340
Bioreactor Controls-III
71
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...
71
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


