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Sophorolipid biosynthesis and production from diverse hydrophilic and hydrophobic carbon substrates

机译:来自多种亲水和疏水性碳基材的Sophorolipid生物合成和生产

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摘要

Sophorolipids (SLs), mainly synthesized by yeasts, were a sort of biosurfactant with the highest fermentation level at present. In recent years, SLs have drawn extensive attention for their excellent physiochemical properties and physiological activities. Besides, issues such as economics, sustainability, and use of renewable resources also stimulate the shift from chemical surfactants towards green or microbial-derived biosurfactants. SLs' large-scale production and application were restricted by the relatively high production costs. Currently, waste streams from agriculture, food and oil refining industries, etc., have been exploited as low-cost renewable substrates for SL production. Advanced cultivation method, uncommonly used substrates, and new genetically modified SL-producing mutants were also designed and applied to improve the productivity or the special properties of SLs. In this review, a systematic and detailed description of primary and secondary metabolism pathways involved in SL biosynthesis was summarized firstly. Furthermore, based on the pathways of SL biosynthesis from different carbon substrates, we reviewed the current knowledge and advances in the exploration of cost-effective and infrequently used hydrophilic and hydrophobic substrates for large or specialized SL production.
机译:主要由酵母合成的Sophorolipids(SLS)是一种存在目前最高发酵水平的生物活性剂。近年来,SLS对其优异的理化性质和生理活动进行了广泛的关注。此外,可再生资源的经济学,可持续性和使用等问题还刺激了化学表面活性剂朝向绿色或微生物衍生的生物表面活性剂的转变。 SLS的大规模生产和应用受到相对较高的生产成本的限制。目前,农业,食品和石油精炼行业等废物流被利用为SL生产的低成本可再生基材。先进的栽培方法,罕见使用的基材和新的遗传改性的SL-产生突变体,并应用于提高SLS的生产率或特殊性质。在本文中,首先综述了SL生物合成中涉及的初级和次生代谢途径的系统和详细描述。此外,基于来自不同碳基材的SL生物合成的途径,我们审查了当前的知识和进步,探索成本效益和不经常使用用于大型或专用SL生产的亲水和疏水基材。

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