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  • New simple and efficient method of DNA isolation from pear leaves rich in polyphenolic compounds
    21-24.
    Views:
    114

    This study aimed to establish a new protocol for DNA isolation from the Pyrus genus to get high quality DNA that is suitable for the generation of molecular markers, such as RAPD and AFLP. This method is based on modified CTAB extraction procedure (Aldrich & Cullis, 1993). For isolation of high-quality DNA we used copper (II) acetate treatment that enabled fixation and removing of tannins, present in abundance in Pyrus. DNA yield from this procedure is high. DNA is completely digestible with restriction endonucleases and amplifiable in the PCR, indicating freedom from common contaminating polyphenolic compounds.

  • RAPD analysis of grapevine hybrids and cultivars
    63-66.
    Views:
    139

    Utilization of the Randomly Amplified Polymorphic DNA (RAPD) technique as a molecular marker was tested to investigate the relationships between some representative grapevine cultivars and hybrids established at the Department of Genetics and Plant Breeding (CUB), to distinguish clones as well as to characterize various hybrids between species or cultivars and their parents. Vitis vinifera cultivars were easily and successfully distinguished by the RAPD technique and they were grouped according to the traditional taxonomic classification. RAPD patterns of the examined Pinot gris clones proved to be completely identical. Number of generations was reflected by the value of genetic distance of the examined hybrids. Genetic identity of parents and their offsprings was influenced by the selection applied in the process of plant breeding. Parental phenotypic and morphologic characteristics showed high degree of segregation in hybrids, but RAPD analysis revealed that their genetic similarity is considerable. The three Vitis anntrensis clones were properly discriminated from every cultivar and hybrid of Vitis vinifera, i.e. hybrids are much closer to the cultivated grapevine than to V. anzurensis due to the phenotypic selection carried out during the life-cycle of one or two generations.