Pre-T vector and T vector composed of pre-T vector and application thereof
A carrier and cloning carrier technology, applied in the field of genetic engineering, can solve the problem that T vectors cannot be cloned, and achieve the effect of avoiding false positives, false positives and false negatives
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Embodiment 1
[0068] Example 1: Codon optimized lacZα gene
[0069] Codon-optimized lacZα gene, comprising the following steps:
[0070] The lacZα gene (SEQ ID NO.4) of pUC57 was codon optimized using codon optimization software (Codon optimization software, developed by Suzhou Jinweizhi Biotechnology Co., Ltd.), and the optimized lacZα gene was synthesized by Suzhou Jinweizhi Biotechnology Co., Ltd. , the nucleotide sequence is shown in SEQ ID No.4, specifically as follows:
[0071] lacZα基因(SEQ ID NO.4):ATGACCATGCTCGAGCCAAGCTTGCATGCAGGCCTCTGCAGTCGACGGGCCCGGGATCCGATATCTAGATGCATTCGCGAGGTACCGAGCTCGAATTCACTGGCCGTCGTTTTACAACGTCGTGACTGGGAAAACCCTGGCGTTACCCAACTTAATCGCCTTGCAGCACATCCCCCTTTCGCCAGCTGGCGTAATAGCGAAGAGGCCCGCACCGATCGCCCTTCCCAACAGTTGCGCAGCCTGAATGGCGAATGGCGCCTGATGCGGTATTTTCTCCTTACGCATCTGTGCGGTATTTCACACCGCATATGGTGCACTCTCAGTACAATCTGCTCTGATGCCGCATAG;
[0072] 优化后的lacZα基因(SEQ ID NO.5):ATGACCATGCTGGAACCGAGCCTGCATGCAGGTCTGTGCAGCCGTCGTGCACGCGATCCGATTAGCCGCTGCATTCGCGAAGTGCCGAGCAGCAATAGCCTGGCCGTGGT...
Embodiment 2
[0073] Embodiment 2: Construction of high copy T vector
[0074] The construction method of high-copy cloning vector comprises the following specific steps:
[0075] 1) adopt the optimized lacZα gene in Example 1 to replace the lacZα gene of pUC57 (kanamycin resistance), specifically as follows:
[0076] (1) Using the pUC57 plasmid with kanamycin resistance as a template and using SEQ ID NO.6-7 as primers for PCR amplification reaction, the specific sequence is as follows:
[0077] SEQ ID NO.6 (forward primer): ATGCAGGCTCGGTTCCAGCATGGTCATAGCTGTTTCCTGTGTGAAATTGTTATCC;
[0078] SEQ ID NO.7 (reverse primer): AGCACCATTTGCAGCGATGCCGCCTAATTAAGCCAGCCCCGACACCCGCCAACAC;
[0079] The PCR reaction system is shown in Table 1 below:
[0080] Table 1
[0081] template
About 50ng, 0.5μL
10pM, 0.5μL
10pM, 0.5μL
dNTP
5mM each, 0.5μL
5×PCR buffer
10 μL
pfu DNA polymerase
5U / μL, 0.5μL
h ...
Embodiment 3
[0132] Example 3 pUC57-T carrier overcomes the experimental verification of false positive clones
[0133] Construct pUC57-T-MU-1, pUC57-T-MU-2, pUC57-T-MU-3, pUC57-T-MU-4 plasmids to simulate the deletion of 1-2 bases at both ends of the restriction site of pUC57-T The base and self-connection occur, and the construction steps are as follows:
[0134] (1) Using the plasmid pUC57-T constructed in Example 2 as a template, F-MU-1+R-MU-1, F-MU-2+R-MU-2, F-MU-3+R -MU-3, F-MU-4+R-MU-4 are primers for PCR amplification reaction, the primers F-MU-1, R-MU-1, F-MU-2, R-MU-2 The nucleotide sequences of F-MU-3, R-MU-3, F-MU-4 and R-MU-4 are shown in SEQ ID NO.14-SEQ ID NO.21, specifically as follows:
[0135] SEQ ID NO. 14 (F-MU-1): ACATACGAGGACATCAGTCAAAGTGTAAAGCCTGGGGTGCCT;
[0136] SEQ ID NO. 15 (R-MU-1): TTACACTTTGACTGATGTCCTCGTATGTTGTGTGGAATTGTG;
[0137] SEQ ID NO. 16 (F-MU-2): AACATACGAGGACACAGTCAAAGTGTAAAGCCTGGGGTGCCT;
[0138] SEQ ID NO. 17 (R-MU-2): TTACACTTTGACTGTGTCCTCGT...
PUM
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