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Microbial Enzyme Production Using Lignocellulosic Food Industry Wastes as Feedstock: A Review

机译:以木质纤维素食品工业废料为原料生产微生物酶的研究进展

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摘要

Enzymes are of great importance in the industry due to their substrate and product specificity, moderate reaction conditions, minimal by-product formation and high yield. They are important ingredients in several products and production processes. Up to 30% of the total production cost of enzymes is attributed to the raw materials costs. The food industry expels copious amounts of processing waste annually, which is mostly lignocellulosic in nature. Upon proper treatment, lignocellulose can replace conventional carbon sources in media preparations for industrial microbial processes, such as enzyme production. However, wild strains of microorganisms that produce industrially important enzymes show low yield and cannot thrive on artificial substrates. The application of recombinant DNA technology and metabolic engineering has enabled researchers to develop superior strains that can not only withstand harsh environmental conditions within a bioreactor but also ensure timely delivery of optimal results. This article gives an overview of the current complications encountered in enzyme production and how accumulating food processing waste can emerge as an environment-friendly and economically feasible solution for a choice of raw material. It also substantiates the latest techniques that have emerged in enzyme purification and recovery over the past four years.
机译:酶由于其底物和产物的特异性,适度的反应条件,最小的副产物形成和高产率而在工业中非常重要。它们是几种产品和生产过程中的重要成分。酶的总生产成本的30%归因于原材料成本。食品工业每年要排出大量的加工废料,这些废料本质上大多是木质纤维素。经过适当处理,木质纤维素可以代替工业微生物过程(例如酶生产)的培养基制剂中的常规碳源。然而,产生工业上重要的酶的野生微生物菌株显示出低产量并且不能在人工底物上生长。重组DNA技术和代谢工程的应用使研究人员能够开发出优异的菌株,这些菌株不仅可以承受生物反应器内的恶劣环境条件,而且可以确保及时提供最佳结果。本文概述了酶生产中当前遇到的复杂情况,以及如何将积累的食品加工废料作为一种环境友好,经济可行的原料选择解决方案。它还证实了过去四年来酶纯化和回收中出现的最新技术。

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