Medium and low temperature endo-β-mannanase and its coding gene and application
A technology of mannanase and low temperature, applied in the field of genetic engineering, can solve the problems of unfriendly environment, generation of pollutants, unsuitable application of chemical gel breaker engineering, etc., and achieve remarkable economic benefits
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Embodiment 1
[0039] Gene Cloning of Low Temperature Endo-β-Mannanase ManBL27-1 and ManBL27-2 in Example 1
[0040] Genomic DNA of Bacillus subtilis BL-27 was extracted according to the operation steps of the bacterial genomic DNA extraction kit (spin column type Cat#: DP2001). After comparing the complete gene sequence of Bacillus subtilis BL-27 with the β-mannanase gene sequence in NCBI database, primers BL27man1-F:5'-CATGCCATGGCCTTTAAGAAACATACGATCTCTT-3' and BL27man1-R:5 were designed '-CCGCTCGAGTTCAACGATTGGCGTTAAAGAA-3' was used to amplify the complete coding gene with signal peptide; primers BL27man2-F: 5'-CATGCCATGGCCACTGTGTCGCCTGTGAATCCTA-3' and BL27man2-R: 5'-CCGCTCGAGTTCAACGATTGGCGTTAAGAA-3' were designed to amplify and remove the signal The gene encoding the peptide. Using the extracted genomic DNA of Bacillus subtilis BL-27 as a template, amplify the gene sequence encoding β-mannanase BL27Man, the gene manBL27-1 containing signal peptide and the gene manBL27-2 without signal pep...
Embodiment 2
[0041] Recombinant expression of embodiment 2 gene manBL27-1 and manBL27-2 in Escherichia coli BL21 (DE3)
[0042] Taking pET28a as the expression vector, NcoI and XhoI restriction sites were added to the designed upstream and downstream primers respectively as the action sites for constructing the recombinant expression vector. The genes manBL27-1, manBL27-2 and expression vector pET28a recovered from the PCR gel were double-enzyme-digested with NcoI and XhoI respectively (50 μL double-digestion system: 30 μL fragment or plasmid, 2 μL NcoI fast-cut enzyme, 2 μL XhoI fast-cut enzyme, 10 μL Quick-cut Enzyme Buffer, 6 μL ddH 2 O), after enzyme digestion product gel recovery, use T 4 DNA ligase ligation (25 μL ligation system: T4 DNA Ligase 1 μL, 10×T4 DNA Ligase Buffer 2.5 μL, DNA fragment about 0.3 pmol, carrier DNA about 0.03 pmol, ddH 2 O up to 25μL), ligated overnight at 16°C. Take 10 μL of the ligation product to transform 50 μL of E.coli BL21(DE3) competent cells, spre...
Embodiment 3
[0044] Example 3 Determination of Enzyme Activity of Recombinantly Expressed β-Mannanase (DNS Method)
[0045] Preparation of mannose standard curve: Take a clean graduated test tube and label it, draw 100, 200, 300, 400, 500, 600, 700, 800, 900, 1000μL of 1g / L standard mannose solution in a 10mL test tube respectively, The one without mannose was used as a blank control, and three parallels were done for each sample. Add distilled water to each test tube to make up to 1mL, then add 3mL DNS reagent each, boil for 4min, cool with running water, then distill the volume to 15mL with distilled water, and measure the absorbance at a wavelength of 540nm. According to the data to make a standard curve, such as Figure 5 shown.
[0046] Determination of enzyme activity: select locust bean gum, konjac gum, squash gum, guar gum, hydroxypropyl guar gum, and cationic guar gum as substrates, and first use 50mM pH7 phosphate buffer to prepare 8g / L glue solution. Add 100 μL of crude enz...
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