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利用木质纤维素水解物工程化产朊假丝酵母生产 3-羟基丙酸。

Engineering Rhodosporidium toruloides for production of 3-hydroxypropionic acid from lignocellulosic hydrolysate.

机构信息

Biomanufacturing and Biomaterials Department, Sandia National Laboratories, Livermore, CA, USA; Agile BioFoundry, Department of Energy, Emeryville, CA, USA.

Biomanufacturing and Biomaterials Department, Sandia National Laboratories, Livermore, CA, USA; Agile BioFoundry, Department of Energy, Emeryville, CA, USA.

出版信息

Metab Eng. 2023 Jul;78:72-83. doi: 10.1016/j.ymben.2023.05.001. Epub 2023 May 16.

Abstract

Microbial production of valuable bioproducts is a promising route towards green and sustainable manufacturing. The oleaginous yeast, Rhodosporidium toruloides, has emerged as an attractive host for the production of biofuels and bioproducts from lignocellulosic hydrolysates. 3-hydroxypropionic acid (3HP) is an attractive platform molecule that can be used to produce a wide range of commodity chemicals. This study focuses on establishing and optimizing the production of 3HP in R. toruloides. As R. toruloides naturally has a high metabolic flux towards malonyl-CoA, we exploited this pathway to produce 3HP. Upon finding the yeast capable of catabolizing 3HP, we then implemented functional genomics and metabolomic analysis to identify the catabolic pathways. Deletion of a putative malonate semialdehyde dehydrogenase gene encoding an oxidative 3HP pathway was found to significantly reduce 3HP degradation. We further explored monocarboxylate transporters to promote 3HP transport and identified a novel 3HP transporter in Aspergillus pseudoterreus by RNA-seq and proteomics. Combining these engineering efforts with media optimization in a fed-batch fermentation resulted in 45.4 g/L 3HP production. This represents one of the highest 3HP titers reported in yeast from lignocellulosic feedstocks. This work establishes R. toruloides as a host for 3HP production from lignocellulosic hydrolysate at high titers, and paves the way for further strain and process optimization towards enabling industrial production of 3HP in the future.

摘要

微生物生产有价值的生物制品是实现绿色和可持续制造的有前途的途径。产油酵母 Rhodosporidium toruloides 已成为从木质纤维素水解物生产生物燃料和生物制品的有吸引力的宿主。3-羟基丙酸(3HP)是一种有吸引力的平台分子,可用于生产广泛的大宗商品化学品。本研究重点在于建立和优化 R. toruloides 中 3HP 的生产。由于 R. toruloides 天然具有高的代谢通量朝向丙二酰辅酶 A,我们利用这条途径来生产 3HP。在发现酵母能够代谢 3HP 后,我们实施了功能基因组学和代谢组学分析来鉴定代谢途径。发现删除编码氧化 3HP 途径的丙二酸盐半醛脱氢酶基因显著降低了 3HP 的降解。我们进一步探索了单羧酸转运蛋白以促进 3HP 的转运,并通过 RNA-seq 和蛋白质组学鉴定了 Aspergillus pseudoterreus 中的一种新型 3HP 转运蛋白。将这些工程努力与分批补料发酵中的培养基优化相结合,导致 3HP 的产量达到 45.4 g/L。这代表了从木质纤维素原料生产酵母中报告的最高 3HP 滴度之一。这项工作确立了 R. toruloides 作为从木质纤维素水解物生产 3HP 的宿主,可以实现高浓度生产,为未来进一步优化菌株和工艺以实现 3HP 的工业化生产铺平了道路。

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