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To further verify the constructed plasmids, the β-mannanase gene (GeneBank Accession No. KC436314) was inserted into the SD sequence of pBNS2, and the β-mannanase activity was measured. Using primers manA-F/manA-D, the β-mannanase (named manB)
gene was amplified from Bacillus pumilus Nsic-2. Next, the manB gene was subcloned into the BamHI/XhoI site of pBNS2 to generate pBNS2-man. Sequence verification of the manB gene in pBNS2-man was performed. |
The recombinant plasmid was then transformed into the B. subtilis 1A751 strain. |
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Upstream tips |
To further verify the constructed plasmids, the β-mannanase gene (GeneBank Accession No. KC436314) was inserted into the SD sequence of pBNS2, and the β-mannanase activity was measured. Using primers manA-F/manA-D, the β-mannanase (named manB)
gene was amplified from Bacillus pumilus Nsic-2. Next, the manB gene was subcloned into the BamHI/XhoI site of pBNS2 to generate pBNS2-man. Sequence verification of the manB gene in pBNS2-man was performed. |
Protocol tips |
The recombinant plasmid was then transformed into the B. subtilis 1A751 strain. |
Publication protocol
"To further verify the constructed plasmids, the β-mannanase gene (GeneBank Accession No. KC436314) was inserted into the SD sequence of pBNS2, and the β-mannanase activity was measured. Using primers manA-F/manA-D, the β-mannanase (named manB)
gene was amplified from Bacillus pumilus Nsic-2. Next, the manB gene was subcloned into the BamHI/XhoI site of pBNS2 to generate pBNS2-man. Sequence verification of the manB gene in pBNS2-man was performed. The recombinant plasmid was then transformed into the B. subtilis 1A751 strain."
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