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玉米黑粉菌发酵粗底物生产衣康酸:工业化相关生物过程的放大。

Itaconate Production from Crude Substrates with U. maydis: Scale-up of an Industrially Relevant Bioprocess.

机构信息

Institute of Bio- and Geosciences - IBG-1: Biotechnology, Forschungszentrum Jülich GmbH, D-52425, Jülich, Germany.

Bio Base Europe Pilot Plant vzw, Ghent, B-9042, Belgium.

出版信息

Microb Cell Fact. 2024 Jan 20;23(1):29. doi: 10.1186/s12934-024-02295-3.

Abstract

BACKGROUND

Industrial by-products accrue in most agricultural or food-related production processes, but additional value chains have already been established for many of them. Crude glycerol has a 60% lower market value than commercial glucose, as large quantities are produced in the biodiesel industry, but its valorisation is still underutilized. Due to its high carbon content and the natural ability of many microorganisms to metabolise it, microbial upcycling is a suitable option for this waste product.

RESULTS

In this work, the use of crude glycerol for the production of the value-added compound itaconate is demonstrated using the smut fungus Ustilago maydis. Starting with a highly engineered strain, itaconate production from an industrial glycerol waste stream was quickly established on a small scale, and the resulting yields were already competitive with processes using commercial sugars. Adaptive laboratory evolution resulted in an evolved strain with a 72% increased growth rate on glycerol. In the subsequent development and optimisation of a fed-batch process on a 1.5-2 L scale, the use of molasses, a side stream of sugar beet processing, eliminated the need for other expensive media components such as nitrogen or vitamins for biomass growth. The optimised process was scaled up to 150 L, achieving an overall titre of 72 g L, a yield of 0.34 g g, and a productivity of 0.54 g L h.

CONCLUSIONS

Pilot-scale itaconate production from the complementary waste streams molasses and glycerol has been successfully established. In addition to achieving competitive performance indicators, the proposed dual feedstock strategy offers lower process costs and carbon footprint for the production of bio-based itaconate.

摘要

背景

工业副产品在大多数农业或与食品相关的生产过程中都会积累,但其中许多已经建立了额外的价值链。粗甘油的市场价值比商业葡萄糖低 60%,因为在生物柴油行业大量生产,但它的增值利用仍未得到充分利用。由于其高碳含量和许多微生物自然代谢它的能力,微生物升级利用是这种废物的一种合适选择。

结果

在这项工作中,使用黑穗病菌(Ustilago maydis)生产附加值化合物衣康酸的粗甘油得到了证明。从一个高度工程化的菌株开始,很快就在小规模上建立了从工业甘油废物流中生产衣康酸的工艺,并且得到的产率已经与使用商业糖的工艺竞争。适应性实验室进化导致甘油生长速度提高了 72%的进化菌株。在随后的 1.5-2 L 规模的分批补料过程的开发和优化中,使用糖蜜(甜菜加工的副产物)消除了对其他昂贵的培养基成分(如氮或维生素)的需求,以促进生物量生长。优化后的工艺放大到 150 L,实现了 72 g L 的总浓度、0.34 g g 的产率和 0.54 g L h 的生产率。

结论

已成功从互补的废物流糖蜜和甘油建立了衣康酸的中试生产。除了达到有竞争力的性能指标外,所提出的双原料策略还为生物基衣康酸的生产提供了更低的工艺成本和碳足迹。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6976/10799509/7194a0b11aee/12934_2024_2295_Fig1_HTML.jpg

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