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Heterologous gene expression of the glyphosate resistance marker and its application in yeast transformation.
Kunze, G; Bode, R; Rintala, H; Hofemeister, J.
Affiliation
  • Kunze G; Zentralinstitut für Genetik und Kulturpflanzenforschung der Akademie der Wissenschaften der DDR, Gatersleben.
Curr Genet ; 15(2): 91-8, 1989 Feb.
Article in En | MEDLINE | ID: mdl-2663193
ABSTRACT
The E. coli aroA gene was inserted between yeast promoter and terminator sequences in different shuttle expression plasmids and found to confer enhanced EPSP synthase activity as well as resistance to glyphosate toxicity. Subsequently, a transformation system using these newly constructed vectors in yeast was characterized. The efficiency of the glyphosate resistance marker for transformation and selection with plasmid pHR6/20-1 in S. cerevisiae laboratory strain SHY2 was found to be relatively high when compared with selection for LEU2 prototrophy. The fate of the recombinant plasmid pHR6/20-1 in the transformants, the preservation of the aroA E. coli DNA fragment in yeast, mitotic stability, EPSP synthase activity, and growth on glyphosate-containing medium have been investigated. As this plasmid also allows direct selection for glyphosate resistant transformants on rich media, the glyphosate resistance marker was used for transforming both S. cerevisiae laboratory strain SHY2 and brewer's yeast strains S. cerevisiae var. "uvarum" BHS5 and BHS2. In all cases, the vector pHR6/20-1 was maintained as an autonomously replicating plasmid. The resistance marker is, therefore, suitable for transforming genetically unlabelled S. cerevisiae laboratory, wild, and industrial yeast strains.
Subject(s)
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Collection: 01-internacional Database: MEDLINE Main subject: Plasmids / Saccharomyces cerevisiae / Transformation, Genetic / Alkyl and Aryl Transferases / Escherichia coli / Genes / Genes, Bacterial / Genes, Fungal / Glycine Language: En Journal: Curr Genet Year: 1989 Document type: Article
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Collection: 01-internacional Database: MEDLINE Main subject: Plasmids / Saccharomyces cerevisiae / Transformation, Genetic / Alkyl and Aryl Transferases / Escherichia coli / Genes / Genes, Bacterial / Genes, Fungal / Glycine Language: En Journal: Curr Genet Year: 1989 Document type: Article