Abstract
Nine blue fluorescent mutants of the flowering plant Arabidopsis thaliana were isolated by genetic selections and fluorescence screens. Each was shown to contain a recessive allele of trp1, a previously described locus that encodes the tryptophan biosynthetic enzyme phosphoribosylanthranilate transferase (PAT, called trpD in bacteria). The trp1 mutants consist of two groups, tryptophan auxotrophs and prototrophs, that differ significantly in growth rate, morphology, and fertility. The trp1 alleles cause plants to accumulate varying amounts of blue fluorescent anthranilate compounds, and only the two least severely affected of the prototrophs have any detectable PAT enzyme activity. All four of the trp1 mutations that were sequenced are G to A or C to T transitions that cause an amino acid change, but in only three of these is the affected residue phylogenetically conserved. There is an unusually high degree of sequence divergence in the single-copy gene encoding PAT from the wild-type Columbia and Landsberg erecta ecotypes of Arabidopsis.
MeSH Terms
Alleles
Amino Acid Sequence
Anthranilate Phosphoribosyltransferase/genetics,metabolism
Arabidopsis/enzymology,genetics
Base Sequence
DNA, Plant
Enzyme Inhibitors/pharmacology
Fluorescence
Fungal Proteins/genetics,metabolism
Genes, Recessive
Molecular Sequence Data
Mutagenesis
RNA, Messenger
ortho-Aminobenzoates/metabolism,pharmacology
Chemicals
DNA, Plant
Enzyme Inhibitors
Fungal Proteins
RNA, Messenger
ortho-Aminobenzoates
anthranilic acid
6-methylanthranilic acid
Anthranilate Phosphoribosyltransferase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Rose A B
Boyce Thompson Institute for Plant Research, Cornell University, Ithaca, New York 14853-1801, USA.
[email protected]
Li J
Last R L
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