We describe a procedure for genomic difference cloning, a method for isolating sequences present in one genomic DNA population ("tester") that is absent in another ("driver"). By subtractive hybridization, a large excess of driver is used to remove sequences common to a biotinylated tester, enriching the "target" sequences that are unique to the tester. After repeated subtractive hybridization cycles, tester is separated from driver by avidin/biotin affinity chromatography, and single-stranded target is amplified by the polymerase chain reaction, rendering it double-stranded and clonable. We model two situations: the gain of sequences that result from infection with a pathogen and the loss of sequences that result from a large hemizygous de...
We describe a new method for amplification, by polymerase chain reaction (PCR), of rearranged segmen...
Polyrnerase chain reaction (PCR) -coupled subtractive procedure, representa-tional difference analys...
Genetic information is coded in DNA found in the nucleus and mitochondria of animal cells and chloro...
We demonstrate the use of representational difference analysis for cloning probes that detect DNA lo...
Methodology is provided for developing probes for identifying sequence differences between two relat...
The isolation of genes from a given genomic region can be a rate-limiting step in the discovery of d...
We describe a simple PCR-based method for the isolation of genomic DNA that lies adjacent to a known...
Molecular genotyping has important biomedical and forensic applications. However, limiting amounts o...
Coupled amplification and sequencing (CAS) allows a segment of DNA to be sequenced directly from gen...
A novel alternative to microcloning for the production of region specific chromosomal DNA is describ...
Methodology is provided for developing probes for identifying sequence differences between two relat...
Methodology is provided for developing probes for identifying sequence differences between two relat...
In this study we present an improved polymerase chain reaction (PCR)-based methodology to generate l...
The plasmid DNA is cleaved with an enzyme and joined in vitro to foreign DNA; the resulting recombin...
High levels of non-authentic sequence data can be generated by traditional PCR-based methodologies w...
We describe a new method for amplification, by polymerase chain reaction (PCR), of rearranged segmen...
Polyrnerase chain reaction (PCR) -coupled subtractive procedure, representa-tional difference analys...
Genetic information is coded in DNA found in the nucleus and mitochondria of animal cells and chloro...
We demonstrate the use of representational difference analysis for cloning probes that detect DNA lo...
Methodology is provided for developing probes for identifying sequence differences between two relat...
The isolation of genes from a given genomic region can be a rate-limiting step in the discovery of d...
We describe a simple PCR-based method for the isolation of genomic DNA that lies adjacent to a known...
Molecular genotyping has important biomedical and forensic applications. However, limiting amounts o...
Coupled amplification and sequencing (CAS) allows a segment of DNA to be sequenced directly from gen...
A novel alternative to microcloning for the production of region specific chromosomal DNA is describ...
Methodology is provided for developing probes for identifying sequence differences between two relat...
Methodology is provided for developing probes for identifying sequence differences between two relat...
In this study we present an improved polymerase chain reaction (PCR)-based methodology to generate l...
The plasmid DNA is cleaved with an enzyme and joined in vitro to foreign DNA; the resulting recombin...
High levels of non-authentic sequence data can be generated by traditional PCR-based methodologies w...
We describe a new method for amplification, by polymerase chain reaction (PCR), of rearranged segmen...
Polyrnerase chain reaction (PCR) -coupled subtractive procedure, representa-tional difference analys...
Genetic information is coded in DNA found in the nucleus and mitochondria of animal cells and chloro...