• Title of article

    Basic RNases of wild almond (Prunus webbii): Cloning and characterization of six new S-RNase and one “non-S RNase” genes

  • Author/Authors

    Bojana Banovi?، نويسنده , , Nada ?urbanovski، نويسنده , , Miroslav Konstantinovi?، نويسنده , , Vesna Maksimovic، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    8
  • From page
    395
  • To page
    402
  • Abstract
    In order to investigate the S-RNase allele structure of a Prunus webbii population from the Montenegrin region of the Balkans, we analyzed 10 Prunus webbii accessions. We detected 10 different S-RNase allelic variants and obtained the nucleotide sequences for six S-RNases. The BLAST analysis showed that these six sequences were new Prunus webbii S-RNase alleles. It also revealed that one of sequenced alleles, S9-RNase, coded for an amino acid sequence identical to that for Prunus dulcis S14-RNase, except for a single conservative amino acid replacement in the signal peptide region. Another, S3-RNase, was shown to differ by only three amino acid residues from Prunus salicina Se-RNase. The allele S7-RNase was found to be inactive by stylar protein isoelectric focusing followed by RNase-specific staining, but the reason for the inactivity was not at the coding sequence level. Further, in five of the 10 analyzed accessions, we detected the presence of one active basic RNase (marked PW1) that did not amplify with S-RNase-specific DNA primers. However, it was amplified with primers designed from the PA1 RNase nucleotide sequence (basic “non-S RNase” of Prunus avium) and the obtained sequence showed high homology (80%) with the PA1 allele. Although homologs of PA1 “non-S RNases” have been reported in four other Prunus species, this is the first recorded homolog in Prunus webbii. The evolutionary implications of the data are discussed.
  • Keywords
    Basic non-S RNases , Self-incompatibility , S-Rnases , Prunus webbii
  • Journal title
    Journal of Plant Physiology
  • Serial Year
    2009
  • Journal title
    Journal of Plant Physiology
  • Record number

    1281581