Two alleles of the single-copy chalcone synthase gene in parsley differ by a transposon-like element View Full Text


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Article Info

DATE

1988-04

AUTHORS

Anette Hermann, Wolfgang Schulz, Klaus Hahlbrock

ABSTRACT

Two types of genomic DNA hybridizing with a chalcone synthase cDNA were isolated from cell suspension cultures of parsley (Petroselinum crispum cv. Mooskrause) and cloned in lambda EMBL4. Their fragmentation patterns with several common restriction enzymes were identical, except for the occurrence of a 927 base pair insertion in one type relative to the other. This insertion is located 538 base pairs upstream of the first of two transcription start sites and has characteristic features of a transposable element. The two types of cloned DNA most likely represent two alleles of a chalcone synthase gene occurring in one copy per haploid parsley genome. The nucleotide sequence and exon-intron structure of the larger allele were determined. Analysis of plants either heterozygous or homozygous with respect to the chalcone synthase gene revealed that both allelic forms were expressed and activated by UV light. More... »

PAGES

93-98

References to SciGraph publications

  • 1979-03. Gene numbers as measured by single-copy DNA saturation with mRNA are routinely overestimates in NATURE
  • 1988-01. Detection of a single-copy gene on plant chromosomes by in situ hybridization in MOLECULAR GENETICS AND GENOMICS
  • 1986-05. Molecular cloning of the c2 locus of Zea mays, the gene coding for chalcone synthase in MOLECULAR GENETICS AND GENOMICS
  • 1985-02. Characterization of the branch site in lariat RNAs produced by splicing of mRNA precursors in NATURE
  • 1986-03. Structure of the chalcone synthase gene of Antirrhinum majus in MOLECULAR GENETICS AND GENOMICS
  • 1985-05. Cloning and analysis of two genes for chalcone synthase from Petunia hybrida in MOLECULAR GENETICS AND GENOMICS
  • 1986-11. Fluence dependence of the ultraviolet-light-induced accumulation of chalcone synthase mRNA and effects of blue and far-red light in cultured parsley cells in PLANTA
  • 1987. Stimulation of Phenylpropanoid Pathways by Environmental Factors in PLANT MOLECULAR BIOLOGY
  • 1985-05. The transposable element Tam3 of Antirrhinum majus generates a novel type of sequence alterations upon excision in MOLECULAR GENETICS AND GENOMICS
  • 1987. The Significance of Plant Transposable Elements in Biological Processes in STRUCTURE AND FUNCTION OF EUKARYOTIC CHROMOSOMES
  • 1987-12. Organization and differential activation of a gene family encoding the plant defense enzyme chalcone synthase in Phaseolus vulgaris in MOLECULAR GENETICS AND GENOMICS
  • 1982. Biosynthesis in THE FLAVONOIDS
  • 1984-09. Transcription of plant defence genes in response to UV light or fungal elicitor in NATURE
  • 1987-03. The chalcone synthase multigene family of Petunia hybrida (V30): sequence homology, chromosomal localization and evolutionary aspects in PLANT MOLECULAR BIOLOGY
  • 1988-12. Differential regulation and tissue-specific distribution of enzymes of phenylpropanoid pathways in developing parsley seedlings in PLANTA
  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/bf00322449

    DOI

    http://dx.doi.org/10.1007/bf00322449

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1020805727

    PUBMED

    https://www.ncbi.nlm.nih.gov/pubmed/2836708


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