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Changes of 5' Terminal Nucleotides of PCR Primers Causing Variable T-A Cloning Efficiency
引用本文:Mei-Qin Liu Xin Shen Wei-Lun Yin Cun-Fu Lu. Changes of 5' Terminal Nucleotides of PCR Primers Causing Variable T-A Cloning Efficiency[J]. 植物学报(英文版), 2007, 49(3): 382-385. DOI: 10.1111/j.1744-7909.2007.00430.x
作者姓名:Mei-Qin Liu Xin Shen Wei-Lun Yin Cun-Fu Lu
作者单位:College of Biological Sciences and Biotechnology, Beijing Forestry University, Beijing 100083, China
基金项目:Supported by the National Natural Science Foundation of China (30671476 and 30371143), Fok Ying Tung Education Foundation (71030) and Beijing Science and Technology Project (H020720110190).
摘    要:T-A cloning takes advantage of the unpaired adenosyl residue added to the 3' terminus of amplified DNAs by Taq and other thermostable DNA polymerase and uses a Ilnearlzed plasmld vector with a protruding 3' thymldylate residue at each of Its 3' termini to clone polymerase chain reaction (PCR)-derived DNA fragments. It Is a simple, reliable, and efficient Ilgatlon-dependent cloning method for PCR products, but the drawback of variable cloning efficiency occurs during application. In the present work, the relationship between variable T-A cloning efficiency and the different 5' end nucleotlde base of primers used In PCR amplification was studied. The results showed that different cloning efficiency was obtained with different primer pairs containing A, T, C and G at the 5' terminus respectively. The data shows that when the 5' end base of primer pair was adenosyl, more white colonies could be obtained In cloning the corresponding PCR product In comparison with other bases. And the least white colonies were formed when using the primer pair with 5' cytldylate end. The gluanylate end primers resulted In almost the same cloning efficiency In the white colonies amount as the thymldylate end primer did, and this efficiency was much lower than that of adenosyl end primers. This presumably is a consequence of variability In 3'dA addition to PCR products mediated by Taq polymerase. Our results offer instructions for primer design for researchers who choose T-A cloning to clone PCR products.

关 键 词:聚合酶链反应 引物 T-A克隆法 克隆效率 末端核苷酸
修稿时间:2005-09-192005-11-23

Changes of 5' Terminal Nucleotides of PCR Primers Causing Variable T-A Cloning Efficiency
Mei-Qin Liu,Xin Shen,Wei-Lun Yin , Cun-Fu Lu. Changes of 5' Terminal Nucleotides of PCR Primers Causing Variable T-A Cloning Efficiency[J]. Journal of integrative plant biology, 2007, 49(3): 382-385. DOI: 10.1111/j.1744-7909.2007.00430.x
Authors:Mei-Qin Liu  Xin Shen  Wei-Lun Yin    Cun-Fu Lu
Affiliation:College of Biological Sciences and Biotechnology, Beijing Forestry University;, Beijing 100083, China
Abstract:T‐A cloning takes advantage of the unpaired adenosyl residue added to the 3′ terminus of amplified DNAs by Taq and other thermostable DNA polymerase and uses a linearized plasmid vector with a protruding 3′ thymidylate residue at each of its 3′ termini to clone polymerase chain reaction (PCR)‐derived DNA fragments. It is a simple, reliable, and efficient ligation‐dependent cloning method for PCR products, but the drawback of variable cloning efficiency occurs during application. In the present work, the relationship between variable T‐A cloning efficiency and the different 5′ end nucleotide base of primers used in PCR amplification was studied. The results showed that different cloning efficiency was obtained with different primer pairs containing A, T, C and G at the 5′ terminus respectively. The data shows that when the 5′ end base of primer pair was adenosyl, more white colonies could be obtained in cloning the corresponding PCR product in comparison with other bases. And the least white colonies were formed when using the primer pair with 5′ cytidylate end. The gluanylate end primers resulted in almost the same cloning efficiency in the white colonies amount as the thymidylate end primer did, and this efficiency was much lower than that of adenosyl end primers. This presumably is a consequence of variability in 3′dA addition to PCR products mediated by Taq polymerase. Our results offer instructions for primer design for researchers who choose T‐A cloning to clone PCR products.
Keywords:efficiency   polymerase chain reaction   primer   T-A cloning   terminal nucleotide
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