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An adaptor strategy to subclone entire cDNA libraries as single insert recombinants.

Böttger Ec

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Abstract

The current methods for subcloning entire cDNA libraries usually result in a significant portion of recombinants containing multiple inserts, since in most instances the inserts derived from the library to be subcloned are released as a bulk of self-ligatable DNA fragments. By use of an adaptor strategy, a method is presented to confer noncompatible ends to primarily self-ligatable inserts, resulting in efficient subcloning of entire libraries as single insert recombinants.

About this research paper

What this paper is about

The current methods for subcloning entire cDNA libraries usually result in a significant portion of recombinants containing multiple inserts, since in most instances the inserts derived from the library to be subcloned are released as a bulk of self-ligatable DNA fragments. By use of an adaptor strategy, a method is presented to confer noncompatible ends to primarily self-ligatable inserts, resulting in efficient subcloning of entire libraries as single insert recombinants.

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Available abstract

The current methods for subcloning entire cDNA libraries usually result in a significant portion of recombinants containing multiple inserts, since in most instances the inserts derived from the library to be subcloned are released as a bulk of self-ligatable DNA fragments. By use of an adaptor strategy, a method is presented to confer noncompatible ends to primarily self-ligatable inserts, resulting in efficient subcloning of entire libraries as single insert recombinants.

Key concepts: Subcloning, Insert (composites), Biology, cDNA library, Complementary DNA, Genomic library, DNA, Computational biology

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An adaptor strategy to subclone entire cDNA libraries as single insert recombinants. — Research Paper | ScholarLens