2006PubMedRequires access

[Progress of the PCR amplification techniques for chromosome walking].

Bo Liu, Qiao Su, Min-Qian Tang, Xiaodong Yuan, Li-Jia An

Open publisher page 4 citations

Abstract

Various PCR-based methods are available for chromosome walking from a known sequence to an unknown region. It is promising in genome-related research for the following experiments: promoter cloning, obtaining non-conservative parts of genes in new species, identification of T-DNA or transposon insertion sites and filling in gaps or unknown chromosome regions in genome sequencing. These methods consisted of three types: inverse PCR, ligation-mediated PCR and specific primer PCR. In this review, we illustrated and compared the current techniques.

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What this paper is about

Various PCR-based methods are available for chromosome walking from a known sequence to an unknown region. It is promising in genome-related research for the following experiments: promoter cloning, obtaining non-conservative parts of genes in new species, identification of T-DNA or transposon insertion sites and filling in gaps or unknown chromosome regions in genome sequencing. These methods consisted of three types: inverse PCR, ligation-mediated PCR and specific primer PCR. In this review, we illustrated and compared the current techniques.

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Available abstract

Various PCR-based methods are available for chromosome walking from a known sequence to an unknown region. It is promising in genome-related research for the following experiments: promoter cloning, obtaining non-conservative parts of genes in new species, identification of T-DNA or transposon insertion sites and filling in gaps or unknown chromosome regions in genome sequencing. These methods consisted of three types: inverse PCR, ligation-mediated PCR and specific primer PCR. In this review, we illustrated and compared the current techniques.

Key concepts: Biology, Genetics, Chromosome, In silico PCR, Inverse polymerase chain reaction, Genome, Transposable element, Cloning (programming)

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