Serveur d'exploration Hippolyte Bernheim

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Irradiation and fusion gene transfer

Identifieur interne : 000934 ( Main/Exploration ); précédent : 000933; suivant : 000935

Irradiation and fusion gene transfer

Auteurs : Michael A. Walter [Canada] ; Peter N. Goodfellow [Royaume-Uni]

Source :

RBID : ISTEX:8357F5C62A507FC32B45B33ECB5766F948A8959A

English descriptors

Abstract

Abstract: Irradiation and fusion gene transfer (IFGT) is a technique that spans the gap between the limitations of molecular methods and somatic-cell genetics, allowing the separation of DNA fragments between 0.25 and 30 Mb in size. In conjunction with genetic linkage analysis and physical mapping techniques, IFGT provides a very useful addition to methods for cloning disease loci, and mapping chromosomes and entire genomes.

Url:
DOI: 10.1007/BF02789107


Affiliations:


Links toward previous steps (curation, corpus...)


Le document en format XML

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<term>Bayesian methods</term>
<term>Boehnke</term>
<term>Brcal region</term>
<term>Cell fusion</term>
<term>Cell genet</term>
<term>Cell hybrids</term>
<term>Cell line</term>
<term>Cell lines</term>
<term>Chromosomal</term>
<term>Chromosome</term>
<term>Clone</term>
<term>Critical factors</term>
<term>Disease loci</term>
<term>Distal region</term>
<term>Donor cell</term>
<term>Donor cells</term>
<term>Dos</term>
<term>Entire genome</term>
<term>Fragment</term>
<term>Fusion gene transfer</term>
<term>Gene</term>
<term>Genet</term>
<term>Genetic linkage analysis</term>
<term>Genome</term>
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<term>Goodfellow</term>
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<term>High doses</term>
<term>High retention frequencies</term>
<term>Human chromosomal region</term>
<term>Human chromosome</term>
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<term>Human chromosomes</term>
<term>Human fragments</term>
<term>Human genes</term>
<term>Human genome</term>
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<term>Human material</term>
<term>Hybrid</term>
<term>Hybrid cells</term>
<term>Hybrid clones</term>
<term>Hybrid lines</term>
<term>Ifgt</term>
<term>Ifgt data</term>
<term>Incontinentia pigmenti</term>
<term>Irradiation hybrids</term>
<term>Irradiation step</term>
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<term>Lethal dose</term>
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<term>Locus order</term>
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<term>Mapping</term>
<term>Mapping panel</term>
<term>Marker</term>
<term>Marker frequency</term>
<term>Marker retention</term>
<term>Marker retention frequencies</term>
<term>Maximum likelihood methods</term>
<term>Microtiter plates</term>
<term>Molecular methods</term>
<term>Physical mapping techniques</term>
<term>Physical maps</term>
<term>Polyethylene glycol</term>
<term>Radiation dosage</term>
<term>Radiation dose</term>
<term>Radiation doses</term>
<term>Radiation hybrids</term>
<term>Rapid isolation</term>
<term>Recipient cell line</term>
<term>Recipient cell lines</term>
<term>Repetitive sequence polymerase chain reaction</term>
<term>Retention frequency</term>
<term>Rodent portion</term>
<term>Room temperature</term>
<term>Same cell lines</term>
<term>Selectable marker</term>
<term>Selectable markers</term>
<term>Simple screen</term>
<term>Single panel</term>
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<term>Somatic</term>
<term>Somatic cell</term>
<term>Somatic cell hybrids</term>
<term>Somatic cells</term>
<term>Statistical analysis</term>
<term>Statistical methods</term>
<term>Such hybrids</term>
<term>Translocation breakpoints</term>
<term>Trends genet</term>
<term>True hybrids</term>
<term>Useful addition</term>
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