2003Humana Press eBooksRequires access

Inverse PCR Approach to Cloning cDNA Ends

Sheng‐He Huang

Open publisher page 5 citations

Abstract

Since the first report on cDNA cloning in 1972 (), this technology has been developed into a powerful and universal tool in the isolation, characterization, and analysis of both eukaryotrc and prokaryotic genes. But the conventional methods of cDNA cloning require much effort to generate a library that is packaged in phage or plasmid and then survey a large number of recombinant phages or plasmids. There are three major limitations in those methods. First, substantial amount (at least 1 µg) of purified mRNA is needed as starting material to generate libraries of sufficient diversity (). Second, the intrinsic difficulty of multiple sequential enzymatic reactions required for cDNA cloning often leads to low yields and truncated clones (). Finally, screening of a library with hybridization technique is time consuming.

About this research paper

What this paper is about

Since the first report on cDNA cloning in 1972 (), this technology has been developed into a powerful and universal tool in the isolation, characterization, and analysis of both eukaryotrc and prokaryotic genes. But the conventional methods of cDNA cloning require much effort to generate a library that is packaged in phage or plasmid and then survey a large number of recombinant phages or plasmids. There are three major limitations in those methods. First, substantial amount (at least 1 µg) of purified mRNA is needed as starting material to generate libraries of sufficient diversity (). Second, the intrinsic difficulty of multiple sequential enzymatic reactions required for cDNA cloning often leads to low yields and truncated clones (). Finally, screening of a library with hybridization technique is time consuming.

Why it matters

OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Since the first report on cDNA cloning in 1972 (), this technology has been developed into a powerful and universal tool in the isolation, characterization, and analysis of both eukaryotrc and prokaryotic genes. But the conventional methods of cDNA cloning require much effort to generate a library that is packaged in phage or plasmid and then survey a large number of recombinant phages or plasmids. There are three major limitations in those methods. First, substantial amount (at least 1 µg) of purified mRNA is needed as starting material to generate libraries of sufficient diversity (). Second, the intrinsic difficulty of multiple sequential enzymatic reactions required for cDNA cloning often leads to low yields and truncated clones (). Finally, screening of a library with hybridization technique is time consuming.

Key concepts: Cloning (programming), Complementary DNA, Plasmid, cDNA library, Computational biology, Biology, Recombinant DNA, Library

Related papers

Back to paper searchBrowse research topicsOriginal source
Inverse PCR Approach to Cloning cDNA Ends — Research Paper | ScholarLens