Assessment of Genetic Diversity in Some Iranian Populations of Bunium persicum Using RAPD and AFLP Markers

Authors

  • Ali Akbar Najafi Department of Science, Faculty of Sciences, University of Tehran, P.O. Box 14415514174, Tehran, I.R. Iran
  • Fatemeh Jahansooz Department of Science, Faculty of Sciences, University of Tehran, P.O. Box 14415514174, Tehran, I.R. Iran
  • Fatemeh Sefidkon Research Institute of Forests and Rangelands, P.O. Box 13185-116,Tehran, I.R. Iran
  • Maryam Pezhmanmehr Department of Horticultural Sciences, Faculty of Agriculture, University of Tehran, P.O. Box 31587-77871, Karaj, I.R. Iran
  • Mohammad Esmaeil Hassani Department of Horticultural Sciences, Faculty of Agriculture, University of Tehran, P.O. Box 31587-77871, Karaj, I.R. Iran
  • Mohsen Mardi Department of Genomics, Agricultural Biotechnology Research Institute, P.O. Box 31535-1897, Karaj, I.R. Iran
  • Mostafa Pirseiedi Department of Genomics, Agricultural Biotechnology Research Institute, P.O. Box 31535-1897, Karaj, I.R. Iran
Abstract:

The genetic diversity of 20 Iranian populations of Bunium persicum has been evaluated with random amplified polymorphic DNA (RAPD) and amplified fragment length polymorphism (AFLP) markers. Fresh leaves of seedlings from each population were used for genomic DNA extraction. Analysis of banding patterns of 15 RAPD primers and 17 AFLP primer combinations, revealed 192 (86%) and 228 (75%) polymorphic bands, respectively. The range of similarity coefficients within populations were 0.4-0.82 for RAPD and 0.39-0.96 for AFLP markers. No association was observed between similarity matrices of both the DNA markers. Genetic distance patterns between B. persicum populations, expressed by the RAPD and AFLP cluster analyses were relatively different. The resulting dendrograms based on AFLP and RAPD + AFLP markers were more similar when compared to that derived from RAPD analysis. The AFLP generated dendrogram was supported with the highest bootstrap values. The measures of relative genetic distances among populations did not completely correlate with geographical distances of places of their origin. Several populations of black cummin were represented as independent groups in the clusters, showing a high level of genetic diversity and unique genetic background. Knowledge of wide genetic diversity observed in the B. persicum populations provides important information for management of germplasm resources with regard to future domestication and breeding programs.

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Journal title

volume 7  issue 2

pages  93- 100

publication date 2009-04-01

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