Majumder Debashrita, Dey Ankita, Ray Srimanta, Bhattacharya Debasmita, Nag Moupriya, Lahiri Dibyajit
Department of Biotechnology, Institute of Engineering and Management, Kolkata, University of Engineering and Management, Kolkata, West Bengal, India.
Department of Chemical Engineering, National Institute of Technology, Agartala, India.
Food Chem (Oxf). 2024 Aug 23;9:100218. doi: 10.1016/j.fochms.2024.100218. eCollection 2024 Dec 30.
In biotechnological applications, lipases are recognized as the most widely utilized and versatile enzymes, pivotal in biocatalytic processes, predominantly produced by various microbial species. Utilizing omics technology, natural sources can be meticulously screened to find microbial flora which are responsible for oil production. Lipases are versatile biocatalysts. They are used in a variety of bioconversion reactions and are receiving a lot of attention because of the quick development of enzyme technology and its usefulness in industrial operations. This article offers recent insights into microbial lipase sources, including fungi, bacteria, and yeast, alongside traditional and modern methods of purification such as precipitation, immunopurification and chromatographic separation. Additionally, it explores innovative methods like the reversed micellar system, aqueous two-phase system (ATPS), and aqueous two-phase flotation (ATPF). The article deals with the use of microbial lipases in a variety of sectors, including the food, textile, leather, cosmetics, paper, detergent, while also critically analyzing lipase-producing microbes. Moreover, it highlights the role of lipases in biosensors, biodiesel production, tea processing, bioremediation, and racemization. This review provides the concept of the use of omics technique in the mechanism of screening of microbial species those are capable of producing lipase and also find the potential applications.
在生物技术应用中,脂肪酶被认为是应用最广泛、功能最多样的酶,在生物催化过程中起关键作用,主要由各种微生物产生。利用组学技术,可以精心筛选天然来源,以找到产油的微生物群落。脂肪酶是多功能生物催化剂。它们用于各种生物转化反应,并且由于酶技术的快速发展及其在工业操作中的实用性而受到广泛关注。本文介绍了微生物脂肪酶来源的最新见解,包括真菌、细菌和酵母,以及沉淀、免疫纯化和色谱分离等传统和现代纯化方法。此外,还探讨了反胶束系统、双水相系统(ATPS)和双水相浮选(ATPF)等创新方法。本文论述了微生物脂肪酶在食品、纺织、皮革、化妆品、造纸、洗涤剂等多个领域的应用,同时对产脂肪酶的微生物进行了批判性分析。此外,还强调了脂肪酶在生物传感器、生物柴油生产、茶叶加工、生物修复和外消旋化中的作用。这篇综述提供了利用组学技术筛选产脂肪酶微生物的机制概念,并发现了其潜在应用。