Abstract
A single amino-acid change in the acetolactate synthase (ALS) protein of tobacco confers resistance to the herbicide chlorsulfuron. A deleted, nonfunctional fragment from the acetolactate synthase gene, carrying the mutant site specifying chlorsulfuron resistance plus a closely linked novel restriction site marker, was cloned into a binary vector. Tobacco protoplasts transformed with Agrobacterium tumefaciens carrying this vector yielded chlorsulfuron-resistant colonies. DNA gel blot analysis of DNA from these colonies suggested that in three transformants homologous recombination had occurred between the endogenous ALS gene and the deleted ALS gene present in the incoming T-DNA. Plants were regenerated from these chlorsulfuron-resistant colonies, and in two of the transformants, genetic analysis of their progeny showed that the novel gene segregated as a single Mendelian locus. Possible models for the generation of these recombinant plants are discussed.
MeSH Terms
Acetolactate Synthase/genetics
Agrobacterium tumefaciens/genetics
Base Sequence
Crosses, Genetic
Drug Resistance/genetics
Genes, Plant/genetics
Herbicides/pharmacology
Molecular Sequence Data
Plants, Toxic
Plasmids/genetics
Recombination, Genetic
Sulfonamides
Tobacco/genetics
Transformation, Genetic
Triazines/pharmacology
Chemicals
Herbicides
Sulfonamides
Triazines
Acetolactate Synthase
chlorsulfuron
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Lee K Y
DNA Plant Technology, Oakland, California 94608.
Lund P
Lowe K
Dunsmuir P
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