Yarrowia lipolytica engineering strain for biologically synthesizing glycyrrhetinic acid by taking glucose as substrate as well as construction and application thereof
A technology of Yarrowia lipolytica and glycyrrhetinic acid, which is applied in the biological field, can solve the problems of endangering human safety, long routes, and staying, and achieve the effect of being friendly to the human body and the environment
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Embodiment 1
[0030] Example 1. Construction of Glycyrrhetinic Acid-Producing Yarrowia lipolytica Engineering Bacteria
[0031] (1) Synthesis of the coding sequence of glycyrrhetinic acid synthesis-related protein
[0032] Artificially synthesized β-amyresinol synthase bAS, whose nucleotide sequence is shown in SEQ ID NO:001, and whose amino acid sequence is shown in SEQ ID NO:002, which was constructed as the pUC19 plasmid vector backbone to obtain the pUC19-bAS plasmid; artificially synthesized NADPH -Cytochrome P450 reductase gene CPR, its nucleotide sequence is shown in SEQ ID NO:003, and its amino acid sequence is shown in SEQ ID NO:004, which is constructed into the pUC19 vector backbone to obtain the pUC19-CRP plasmid; artificially synthesized cytochrome P450 The oxidase CYP88D6 gene, whose nucleotide sequence is shown in SEQ ID NO:005, and its amino acid sequence is shown in SEQ ID NO:006, was constructed into the pUC19 vector backbone to obtain the pUC19-CYP88D6 plasmid; artifici...
Embodiment 2
[0042] Embodiment 2 produces the fermentation and detection of glycyrrhetinic acid
[0043] (1) Shake flask fermentation: YPD medium is used for the cultivation and fermentation of Yarrowia lipolytica. For the single fermentation of shake flask, first pick a single clone of GA001 strain from the plate and inoculate it into 10ml of YPD medium for seeding The activated seed solution was then transferred to a 250ml shake flask, loaded with 30mL of YPD medium, and cultured in a shaker at 30°C at 220rpm for 4 days. All shake flask fermentation experiments were set up with 3 parallel experimental groups. After the fermentation is finished, the product detection is carried out in the manner shown in Example 2 (2);
[0044] (2) The cells were centrifuged at 6000rpm for 10 minutes to separate the supernatant and bacteria, and the bacteria were added with 4ml of 1-butanol and quartz sand and vortexed for 20 minutes to extract intracellular products. After evaporating the obtained bu...
Embodiment 3
[0047] Example 3 Weakening lanosterol synthase and enhancing the expression of squalene synthase and squalene cyclooxygenase to improve the expression of licorice Acid production
[0048] (1) Construction of squalene synthase (ERG9) and squalene cyclooxygenase (ERG1) expression modules
[0049] Php4d-ERG9-xpr2 expression module construction: using hp4d-up / down and xpr2t-up / down as primers and pINA1269 plasmid as a template, the Php4d promoter and xpr2t terminator were respectively amplified; using ERG9-F / R as primers, The Yarrowia lipolytica genome was used as a template to amplify the squalene synthase ERG9 gene, and the Overlap method was used to construct the Php4d-ERG9-xpr2 expression module.
[0050] Construction of pTEFin-ERG1-lip2t expression module: using pTEFin-up / down and lip2t-up / down as primers, pMT015 plasmid as template, amplified to obtain PTEFin promoter and lip2t terminator; using ERG1-F / R as primers, The Yarrowia lipolytica genome was used as a template ...
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