Barcoded Primers Used in Multiplex Amplicon Pyrosequencing Bias Amplification
David M. Berry, Karim Ben Mahfoudh, Michael Wagner, Alexander Loy
Abstract
David M. Berry, Karim Ben Mahfoudh, Michael Wagner, Alexander Loy
Abstract
ABSTRACT “Barcode-tagged” PCR primers used for multiplex amplicon sequencing generate a thus-far-overlooked amplification bias that produces variable terminal restriction fragment length polymorphism (T-RFLP) and pyrosequencing data from the same environmental DNA template. We propose a simple two-step PCR approach that increases reproducibility and consistently recovers higher genetic diversity in pyrosequencing libraries.
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ABSTRACT “Barcode-tagged” PCR primers used for multiplex amplicon sequencing generate a thus-far-overlooked amplification bias that produces variable terminal restriction fragment length polymorphism (T-RFLP) and pyrosequencing data from the same environmental DNA template. We propose a simple two-step PCR approach that increases reproducibility and consistently recovers higher genetic diversity in pyrosequencing libraries.
Key concepts: Pyrosequencing, Amplicon, Biology, Multiplex, Genetics, Restriction fragment length polymorphism, Terminal restriction fragment length polymorphism, Multiplex polymerase chain reaction