Genetically engineered bacterium for high yield of L-cysteine, construction method and application
A technology of genetically engineered bacteria and cysteine, applied in the field of genetically engineered bacteria, construction and application of high-yield L-cysteine, can solve the problems of L-cysteine fermentation production without in-depth and meticulous research , to achieve the effect of enhancing the utilization capacity, weakening the translocation and weakening the impact
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Embodiment 1
[0066] Embodiment 1: the mensuration of L-cysteine content
[0067] The detection method is as follows:
[0068] Preparation of acidic ninhydrin: Weigh 250 mg of ninhydrin and add 6 mL of acetic acid and 4 mL of hydrochloric acid to prepare an acidic ninhydrin solution.
[0069] Sample treatment: dilute the sample concentration to between 0.1 and 1g / L;
[0070] Reaction conditions: Mix 500 μL sample, 500 μL acetic acid and 500 μL acidic ninhydrin respectively, and bathe in boiling water for 10 minutes;
[0071] Detection conditions: put the reaction sample at OD 560 Measure its OD at nm 560 value.
Embodiment 2
[0072] Embodiment 2: Construction effective bacterial strain E.coli W3110EY (Trc-pgk) and shaking flask fermentation
[0073] Using Escherichia coli W3110EY as the starting strain, use CRISPR-Cas9-mediated gene editing technology (Yu Jiang et al.2015Multigene Editing in the Escherichia coli Genome via the CRISPR-Cas9 System.Applied Environmental Microbiology.81:2506-2514), using source In the trc promoter of pTrc99A (the nucleotide sequence is shown in SEQ ID No.1), the original promoter of pgk was replaced in the genome to enhance the expression intensity of pgk.
[0074] (1) Construction of pTarget-pgk plasmid: Use pTarget F plasmid (Addgene Plasmid#62226) as a template, use pT-pgk-F / pT-pgk-R as primers for PCR amplification, and the PCR product is digested by Dpn I at 37°C 3h, then transformed into E.coli DH5α, screened with spectaclease plate, and sequenced to verify that the correct pTarget-pgk plasmid was obtained, which was used for subsequent connection of DonorDNA.
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Embodiment 3
[0083] Example 3: Construction and Shake Flask Fermentation of E coli W3110 EY (trc-pgk△cycA) Knockout Serine Translocation Gene
[0084] (1) Construction of pTarget-cycA plasmid: Use pTarget F plasmid (Addgene Plasmid#62226) as a template, use pT-cycA-F / pT-cycA-R as primers for PCR amplification, and the PCR product is digested by Dpn I at 37°C 3h, then transformed into E.coli DH5α, screened with spectacle enzyme plate, and sequenced to verify that the correct pTarget-cycA plasmid was obtained, which was used for subsequent connection of DonorDNA.
[0085] (2) Construction of pTD-cycA plasmid: with the E.coli W3110 genome as a template, pTD-cycA-up-F, pTD-cycA-up-R, pTD-cycA-down-F and pTD-cycA-down-R are Primer, construction step is the same as embodiment 2
[0086] (2) to obtain pTD-cycA plasmid.
[0087] (3) Introduce the pCas plasmid (Addgene Plasmid #62225) into the competent E.coli W3110EY (trc-pgk) obtained in Example 2, and the preparation method of the competent E....
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