A highly efficient and stable dual-plasmid system for Bacillus subtilis
A Bacillus subtilis and plasmid technology, applied in the field of genetic engineering, can solve the problems of insolubility, easy formation of inclusion body of target protein, low expression level, etc., and achieve stable expression effect
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Embodiment 1
[0053] Example 1: Construction of simplified pHTmin-sfGFP and pBmin-mCherry recombinant bacteria
[0054] (1) Construction of pHTOriP43-sfGFP strain
[0055] After the sfGFP fragment (nucleotide sequence shown in SEQ ID NO.5) and the constitutive promoter P43 (nucleotide sequence shown in SEQ ID NO.7) were connected to the pHT01 vector by the Infusion method for homology arm assembly , into the Escherichia coli JM109 host, spread it on a 100 μg / mL ampicillin-resistant plate, culture overnight at 37°C, pick a single colony and inoculate it into a 100 μg / mL ampicillin-resistant liquid medium and send it for sequencing; After the plasmid was correct, the plasmid was extracted and transformed into a Bacillus subtilis B.S168 host, and it was verified that a recombinant strain containing the plasmid pHTOriP43-sfGFP was obtained.
[0056] (2) Construction of pBOriP43-mCherry strain
[0057] The mCherry fragment (nucleotide sequence shown in SEQ ID NO.6) and the constitutive promote...
Embodiment 2
[0062] Example 2: Recombinant bacteria containing double plasmids and verification of their protein expression
[0063] (1) Construction of double-plasmid recombinant bacteria containing shuttle version
[0064] The pHTOriP43-sfGFP recombinant bacteria constructed in step (1) of Example 1 were prepared into competent cells, and pBOriP43-mCherry was transformed into the pHTOriP43-sfGFP recombinant bacteria, and placed on a plate containing 5 μg / mL kanamycin resistance After screening and sequencing verification, a Bacillus subtilis containing double plasmids (pHTOriP43-sfGFP+pBOriP43-mCherry) was obtained.
[0065] (2) Construction of a streamlined double-plasmid recombinant bacterium
[0066] Prepare pHTminP43-sfGFP recombinant bacteria into competent cells, transform pBminP43-mCherry into pHTminP43-sfGFP recombinant bacteria, screen on a plate containing 5 μg / mL kanamycin resistance, and sequence verification to obtain a simplified version containing Bacillus subtilis with ...
Embodiment 3
[0071] Example 3: Gene Shakers Based on Dual Plasmids and Inducible Promoters
[0072] (1) Construction of pHTminPgrac-sfGFP-XylR plasmid
[0073] The promoter of pHTminP43-sfGFP is replaced by a lactose-inducible promoter: the lactose-inducible promoter Pgrac-i (nucleotide sequence is shown in SEQ ID NO.1), and then it is combined with the primer pHTPgrac-sfGFP-v1 / The pHTminPgrac-sfGFP-v amplified from v2 (using pHTminP43-sfGFP as a template) was ligated through homology arms, and the two fragments were assembled using Infusion enzyme to obtain a plasmid pHTminPgrac-sfGFP containing a lactose-inducible promoter.
[0074] Integrative expression of xylose-inducible promoter repressor protein in plasmid pHTminPgrac-sfGFP: xylose repressor protein xylR-i fragment (nucleotide sequence shown in SEQ ID NO.2), and then combine it with primer pHTPgrac-xylR-v1 The pHTminPgrac-sfGFP-v amplified from pHTminPgrac-sfGFP / v2 (with pHTminPgrac-sfGFP as a template) was ligated by homology ar...
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