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Direct production of fatty alcohols from glucose using engineered strains of Yarrowia lipolytica

机译:使用工程化的yarrowia lipolytica直接从葡萄糖中直接生产脂肪醇

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摘要

Fatty alcohols are important industrial oleochemicals with broad applications and a growing market. Here, we sought to engineer Yarrowia lipolytica to serve as a renewable source of fatty alcohols (specifically hexadecanol, heptadecanol, octadecanol, and oleyl alcohol) directly from glucose. Through screening four fatty acyl-CoA reductase (FAR) enzyme variants across two engineered background strains, we identified that MhFAR enabled the highest production. Further strain engineering, fed-batch flask cultivation, and extractive fermentation improved the fatty alcohol titer to 1.5 g/L. Scale-up of this strain in a 2L bioreactor led to 5.8 g/L total fatty alcohols at an average yield of 36 mg/g glucose with a maximum productivity of 39 mg/L hr. Finally, we utilized this fatty alcohol reductase to generate a customized fatty alcohol, linolenyl alcohol, from α-linolenic acid. Overall, this work demonstrates Y. lipolytica is a robust chassis for diverse fatty alcohol production and highlights the capacity to obtain high titers and yields from a purely minimal media formulation directly from glucose without the need for complex additives.
机译:脂肪醇是具有广泛应用和不断增长的市场的重要工业油化学。在这里,我们寻求将Yarrowia Lipolytica工程为直接从葡萄糖中作为可再生醇(特别是十六烷醇,庚二烷醇,十八烷醇和Oxeyl醇)的可再生源。通过在两个工程背景菌株上筛选四种脂肪酰基 - CoA还原酶(FAR)酶变体,我们确定MHFAR使能最高的生产。进一步应变工程,氟料烧瓶栽培和萃取发酵改善脂肪醇滴度为1.5g / L.在2L生物反应器中,该菌株的扩展导致5.8g / L的总脂肪醇,平均产率为36mg / g葡萄糖,最大生产率为39mg / L HR。最后,我们利用这种脂肪醇还原酶从α-亚麻酸产生定制的脂肪醇,亚醇醇。总体而言,这项工作证明了Y. Lipolytica是一种稳健的底盘,用于多样化脂肪醇生产,并突出能力获得高滴度,并直接从葡萄糖中从纯度最小培养基制剂产生的能力,而无需复杂的添加剂。

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