Garay Luis A, Boundy-Mills Kyria L, German J Bruce
Department of Food Science and Technology, University of California , Davis, One Shields Avenue, Davis California 95616-8598, United States.
J Agric Food Chem. 2014 Apr 2;62(13):2709-27. doi: 10.1021/jf4042134. Epub 2014 Mar 25.
In recent years attention has been focused on the utilization of microorganisms as alternatives for industrial and nutritional applications. Considerable research has been devoted to techniques for growth, extraction, and purification of high-value lipids for their use as biofuels and biosurfactants as well as high-value metabolites for nutrition and health. These successes argue that the elucidation of the mechanisms underlying the microbial biosynthesis of such molecules, which are far from being completely understood, now will yield spectacular opportunities for industrial scale biomolecular production. There are important additional questions to be solved to optimize the processing strategies to take advantage of the assets of microbial lipids. The present review describes the current state of knowledge regarding lipid biosynthesis, accumulation, and transport mechanisms present in single-cell organisms, specifically yeasts, microalgae, bacteria, and archaea. Similarities and differences in biochemical pathways and strategies of different microorganisms provide a diverse toolset to the expansion of biotechnologies for lipid production. This paper is intended to inspire a generation of lipid scientists to insights that will drive the biotechnologies of microbial production as uniquely enabling players of lipid biotherapeutics, biofuels, biomaterials, and other opportunity areas into the 21st century.
近年来,人们的注意力集中在利用微生物作为工业和营养应用的替代品上。大量研究致力于高价值脂质的生长、提取和纯化技术,这些脂质可作为生物燃料和生物表面活性剂,以及用于营养和健康的高价值代谢物。这些成功表明,尽管对微生物生物合成此类分子的潜在机制尚未完全了解,但现在对其进行阐明将为工业规模的生物分子生产带来巨大机遇。为了优化利用微生物脂质优势的加工策略,还有一些重要问题有待解决。本综述描述了单细胞生物(特别是酵母、微藻、细菌和古细菌)中脂质生物合成、积累和运输机制的当前知识状态。不同微生物生化途径和策略的异同,为脂质生产生物技术的扩展提供了多样的工具集。本文旨在激发一代脂质科学家的见解,推动微生物生产生物技术成为21世纪脂质生物治疗、生物燃料、生物材料及其他机遇领域的独特推动者。