Gradient decrement of annealing time can improve PCR with fluorescent-labeled primers(METHODS)
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概要
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The influences of fluorescence labeling on PCR amplification and T-RFLP analysis were examined by the analyses of a soil bacterial and archaeal community using both clone library and T-RFLP methods. The PCR amplification and microbial community structure patterns were compared among the primers labeled with and without fluorescent groups. PCR amplification was negatively affected by the labeling groups of the primers, which may be caused by the increment of primer molecular weight. It is known that thermodynamic movement of molecules will be slowed as molecular weight increased. Therefore it is understandable that the reaction of primer-DNA template hybridization will be inhibited with the fluorescent groups added to the primer(s). An effective "Gradient-Decreasing Annealing Time Program," in which the annealing time was initially set long and reduced cycle by cycle, can improve PCR efficiency under comparable amplification specificity with the fluorescent-labeled primers. No significant negative impact was observed in the altered conditions.
著者
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Tang Yue-Qin
Department of Energy and Resources Engineering, College of Engineering, Peking University
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Wu Xiao-Lei
Department of Energy and Resources Engineering, College of Engineering, Peking University
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Wu Xiao-lei
Department Of Energy And Resources Engineering College Of Engineering Peking University
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Tang Yueqin
Department Of Energy And Resources Engineering College Of Engineering Peking University
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Tang Yue-qin
Department Of Energy And Resources Engineering College Of Engineering Peking University
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Tang Yue‐qin
Peking Univ. Chn
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LI Yan
Department of Histology and Embryology, Zhongshan School of Medicine, Sun Yat-sen University
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Li Yan
Department Of Dermatology Affiliated Union Hospital Tongji Medical College Huazhong University Of Sc
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Yu Su-Lin
Department of Energy and Resources Engineering, College of Engineering, Peking University
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Zhang Husen
Department of Civil, Environmental, and Construction Engineering, University of Central Florida
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Wu Xiao‐lei
Department Of Energy And Resources Engineering College Of Engineering Peking University
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Tang Yue‐qin
Department Of Energy And Resources Engineering College Of Engineering Peking University
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Yu Su-lin
Department Of Energy And Resources Engineering College Of Engineering Peking University
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Li Yan
Department Of Applied Physics Graduate School Of Engineering Osaka University
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Zhang Husen
Department Of Civil Environmental And Construction Engineering University Of Central Florida
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Li Yan
Department Of Energy And Resources Engineering College Of Engineering Peking University
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Li Yan
Department Of Applied Chemistry Graduate School Of Engineering Kyushu University
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