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PMID: 7858202 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Activation tagging: a means of isolating genes implicated as playing a role in plant growth and development.

Plant molecular biology ·Vol. 26 ·No. 5 ·1994-12-00 ·Pages 1521-8

Walden R, Fritze K, Hayashi H, Miklashevichs E, Harling H, Schell J

Abstract

Activation T-DNA tagging has been used to generate a variety of tobacco cell lines selected by their ability to grow either in the absence of auxin or cytokinin in the culture media, or under selective levels of an inhibitor of polyamine biosynthesis. The majority of the cell lines studied in detail contain single T-DNA inserts genetically co-segregating with the selected phenotype. While most of the plants regenerated from the mutant cell lines appear phenotypically normal, several display phenotypes which could be inferred to result from disturbances in the content, or the metabolism, of auxins and cytokinins, or polyamines. The tagging vector is designed to allow the isolation of tagged plant genes by plasmid rescue. Confirmation that the genomic sequence responsible for the selected phenotype has indeed been isolated is provided by PEG-mediated protoplast DNA uptake of rescued plasmids followed by selection for protoplast growth under the original selective conditions. Several plasmids have been rescued from the mutant lines which confer on transfected protoplasts the ability to grow either in the absence of auxin or cytokinin in the culture media, or under selective levels of an inhibitor of polyamine biosynthesis. This review describes the background to activation tagging and our progress in characterizing the genes that have been tagged in the mutant lines we have generated.

MeSH Terms
Cytokinins/metabolism DNA, Bacterial/genetics Genes, Plant/genetics Indoleacetic Acids/metabolism Mutagenesis, Insertional/methods Plant Growth Regulators/genetics Plants, Toxic Polyamines/metabolism Sequence Tagged Sites Tobacco/genetics,growth & development
Chemicals
Cytokinins DNA, Bacterial Indoleacetic Acids Plant Growth Regulators Polyamines T-DNA
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Walden R
Max Planck Institut für Zuchtungsforschung, Köln, Germany.
Fritze K
Hayashi H
Miklashevichs E
Harling H
Schell J
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Article Info
Journal
Plant molecular biology
Abbr.
Plant Mol Biol
ISSN
0167-4412
Published
1994-12-00
Pages
1521-8
Language
English
Region
Netherlands
NLM ID
9106343
Subset
IM
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