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利用非离子表面活性剂提高粘红酵母中脂肪醇的产量。

Exploiting nonionic surfactants to enhance fatty alcohol production in Rhodosporidium toruloides.

机构信息

Department of Biomass Science and Conversion Technology, Sandia National Laboratories, Livermore, California.

Department of Energy, Agile BioFoundry, Emeryville, California.

出版信息

Biotechnol Bioeng. 2020 May;117(5):1418-1425. doi: 10.1002/bit.27285. Epub 2020 Feb 11.

Abstract

Fatty alcohols (FOHs) are important feedstocks in the chemical industry to produce detergents, cosmetics, and lubricants. Microbial production of FOHs has become an attractive alternative to production in plants and animals due to growing energy demands and environmental concerns. However, inhibition of cell growth caused by intracellular FOH accumulation is one major issue that limits FOH titers in microbial hosts. In addition, identification of FOH-specific exporters remains a challenge and previous studies towards this end are limited. To alleviate the toxicity issue, we exploited nonionic surfactants to promote the export of FOHs in Rhodosporidium toruloides, an oleaginous yeast that is considered an attractive next-generation host for the production of fatty acid-derived chemicals. Our results showed FOH export efficiency was dramatically improved and the growth inhibition was alleviated in the presence of small amounts of tergitol and other surfactants. As a result, FOH titers increase by 4.3-fold at bench scale to 352.6 mg/L. With further process optimization in a 2-L bioreactor, the titer was further increased to 1.6 g/L. The method we show here can potentially be applied to other microbial hosts and may facilitate the commercialization of microbial FOH production.

摘要

脂肪醇(FOHs)是化学工业中生产洗涤剂、化妆品和润滑剂的重要原料。由于能源需求的增长和环境问题,微生物生产 FOH 已经成为植物和动物生产的一种有吸引力的替代方法。然而,由于细胞内 FOH 积累导致的细胞生长抑制是限制微生物宿主中 FOH 产量的一个主要问题。此外,FOH 特异性外排蛋白的鉴定仍然是一个挑战,以前的研究在这方面受到限制。为了解决毒性问题,我们利用非离子表面活性剂来促进 Rhodosporidium toruloides 中 FOH 的外排,该酵母是一种产油酵母,被认为是生产脂肪酸衍生化学品的下一代有吸引力的宿主。我们的结果表明,在少量特里戈尔和其他表面活性剂的存在下,FOH 的外排效率显著提高,生长抑制得到缓解。因此,FOH 的产量在实验室规模下增加了 4.3 倍,达到 352.6mg/L。通过在 2-L 生物反应器中的进一步工艺优化,产量进一步提高到 1.6g/L。我们在这里展示的方法可以潜在地应用于其他微生物宿主,并可能促进微生物 FOH 生产的商业化。

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