Metabolic engineering for single-cell protein production from renewable feedstocks and its applications.

Zhoukang Zhuang, Guangyu Wan, Xiaocong Lu, Linhai Xie, Tao Yu, Hongting Tang
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Abstract

Proteins are indispensable for maintaining a healthy diet and performing crucial functions in a multitude of physiological processes. The growth of the global population and the emergence of environmental concerns have significantly increased the demand for protein-rich foods such as meat and dairy products, exerting considerable pressure on global food supplies. Single-cell proteins (SCP) have emerged as a promising alternative source, characterized by their high protein content and essential amino acids, lipids, carbohydrates, nucleic acids, inorganic salts, vitamins, and trace elements. SCP offers several advantages over the traditional animal and plant proteins. These include shorter production cycles, the use of diverse raw material sources, high energy efficiency, and minimal environmental impact. This review is primarily concerned with the microbial species employed in SCP production, utilization of non-food renewable materials as a source of feedstock, and application of rational and non-rational metabolic engineering strategies to increase SCP biomass and protein content. Moreover, the current applications, production shortages, and safety concerns associated with SCP are discussed.

利用可再生原料生产单细胞蛋白质的代谢工程及其应用。
蛋白质对于维持健康饮食和在许多生理过程中发挥重要作用是不可或缺的。全球人口的增长和环境问题的出现大大增加了对肉类和乳制品等富含蛋白质的食品的需求,对全球粮食供应造成了相当大的压力。单细胞蛋白(SCP)以其高蛋白含量、必需氨基酸、脂质、碳水化合物、核酸、无机盐、维生素和微量元素的特点而成为一种有前景的替代来源。与传统的动植物蛋白相比,SCP具有几个优点。这些包括更短的生产周期、使用多样化的原材料来源、高能效和最小的环境影响。本文主要综述了SCP生产中使用的微生物种类,非食品可再生材料作为原料的利用,以及合理和非理性代谢工程策略的应用,以提高SCP的生物量和蛋白质含量。此外,目前的应用,生产短缺,以及与SCP相关的安全问题进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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