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黑粉菌科生物催化剂用于将一氧化碳衍生底物共代谢以生产碳中性衣康酸

Ustilaginaceae Biocatalyst for Co-Metabolism of CO-Derived Substrates toward Carbon-Neutral Itaconate Production.

作者信息

Ullmann Lena, Phan An N T, Kaplan Daniel K P, Blank Lars M

机构信息

iAMB-Institute of Applied Microbiology, ABBt-Aachen Biology and Biotechnology, RWTH Aachen University, Worringerweg 1, 52074 Aachen, Germany.

出版信息

J Fungi (Basel). 2021 Jan 29;7(2):98. doi: 10.3390/jof7020098.

Abstract

The family Ustilaginaceae (belonging to the smut fungi) are known for their plant pathogenicity. Despite the fact that these plant diseases cause agricultural yield reduction, smut fungi attracted special attention in the field of industrial biotechnology. Ustilaginaceae show a versatile product spectrum such as organic acids (e.g., itaconate, malate, succinate), polyols (e.g., erythritol, mannitol), and extracellular glycolipids, which are considered value-added chemicals with potential applications in the pharmaceutical, food, and chemical industries. This study focused on itaconate as a platform chemical for the production of resins, plastics, adhesives, and biofuels. During this work, 72 different Ustilaginaceae strains from 36 species were investigated for their ability to (co-) consume the CO-derived substrates acetate and formate, potentially contributing toward a carbon-neutral itaconate production. The fungal growth and product spectrum with special interest in itaconate was characterized. MB215 and NBRC 8995 were identified as promising candidates for acetate metabolization whereas NBRC 7530 was identified as a potential production host using formate as a co-substrate enhancing the itaconate production. Selected strains with the best itaconate production were characterized in more detail in controlled-batch bioreactor experiments confirming the co-substrate utilization. Thus, a proof-of-principle study was performed resulting in the identification and characterization of three promising Ustilaginaceae biocatalyst candidates for carbon-neutral itaconate production contributing to the biotechnological relevance of Ustilaginaceae.

摘要

黑粉菌科(属于黑粉菌)以其植物致病性而闻名。尽管这些植物病害会导致农业产量下降,但黑粉菌在工业生物技术领域引起了特别关注。黑粉菌科展示了多种产品谱,如有机酸(如衣康酸、苹果酸、琥珀酸)、多元醇(如赤藓糖醇、甘露醇)和细胞外糖脂,这些被认为是具有潜在应用价值的化学品,可应用于制药、食品和化工行业。本研究聚焦于衣康酸作为生产树脂、塑料、粘合剂和生物燃料的平台化学品。在这项工作中,对来自36个物种的72种不同黑粉菌科菌株进行了研究,考察它们(共)消耗一氧化碳衍生底物乙酸盐和甲酸盐的能力,这可能有助于实现衣康酸的碳中和生产。对真菌生长和特别关注衣康酸的产品谱进行了表征。MB215和NBRC 8995被确定为乙酸盐代谢的有前景候选菌株,而NBRC 7530被确定为潜在的生产宿主,它使用甲酸盐作为共底物可提高衣康酸产量。在控制分批生物反应器实验中对选定的衣康酸产量最佳的菌株进行了更详细的表征,证实了共底物的利用。因此,进行了一项原理验证研究,结果鉴定并表征了三种有前景的黑粉菌科生物催化剂候选菌株,用于碳中和衣康酸生产,这有助于提高黑粉菌科在生物技术方面的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/957d/7911105/ac9ab0d30297/jof-07-00098-g001.jpg

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