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Combined adaptive evolution and transcriptomic profiles reveal aromatic aldehydes tolerance mechanisms in Yarrowia lipolytica

Bioresour Technol. 2021-02; 
Linlin Zhou, Zhaoxian Xu, Zhiqiang Wen, Minrui Lu, Zedi Wang, Yuwei Zhang, Huarong Zhou, Mingjie Jin
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Gene Synthesis … 2.5. DNA manipulation and vectors construction. All DNA sequencing and oligonucleotide primers synthesis were conducted by GenScript Biotech Corp (Nanjing, China). All recombinant DNA manipulations were performed according to the previou. Get A Quote

摘要

Yarrowia lipolytica is an efficient oleaginous yeast, whereas its activity is typically reduced by inhibitors present in lignocellulosic hydrolysate. Understanding the response mechanism of Y. lipolytica to hydrolysate inhibitors and developing inhibitor tolerant strains are vital to lignocellulose valorization by this promising species. In this study, through adaptive laboratory evolution on three representative aromatic aldehyde inhibitors, evolved strains were obtained. Fermentation phenotype suggested that aromatic aldehydes conversion was one main reason for high tolerance of adapted strains. Transcriptome profiling analysis and reverse metabolic engineering confirmed that overexpressing the aldehyde keton... More

關(guān)鍵詞

Aromatic inhibitors, Evolutionary engineering, Reverse metabolic engineering, Transcriptome analysis, Yarrowia lipolytica
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