Discrimination of Species Specific DNA Markers Using RAPD and AFLP Analysis between Atractylodes japonica Koidz. and Atractylodes macrocephala Koidz.

  • Bang, Kyong-Hwan (Division of Industrial Crop, National Crop Experiment Station, RDA) ;
  • Park, Chun-Geon (Division of Industrial Crop, National Crop Experiment Station, RDA) ;
  • Jin, Dong-Chun (Division of Industrial Crop, National Crop Experiment Station, RDA) ;
  • Kim, Hong-Sig (Department of Plant Resources, Chungbuk National University) ;
  • Park, Hee-Woon (Division of Industrial Crop, National Crop Experiment Station, RDA) ;
  • Park, Chung-Heon (Division of Industrial Crop, National Crop Experiment Station, RDA) ;
  • Seong, Nak-Sul (Division of Industrial Crop, National Crop Experiment Station, RDA)
  • Published : 2003.11.30

Abstract

To identify the variation of the RAPD patterns between two Atractylodes species, 52 kinds of random primers were applied to each eight of A japonica and A. macrocephala genomic DNA. Ten primers of 52 primers could be used to discriminate between the species and 18 polymorphisms among 67 scored DNA fragments (18 fragments are specific for A. japonica and A. macrocephala) were generated using these primers, 26.9% of which were polymorphic. RAPD data from the 10 primers was used for cluster analysis. The cluster analysis of RAPD markers showed that the two groups are genetically distinct. On the other hand, to identify the variation of the AFLP patterns and select the species specific AFLP markers, eight combinations of EcoRI/MseI primers were applied to the bulked A. japonica and A. macrocephala genomic DNA. Consequently, three combinations of EcoRI/MseI primers (EcoRI /Mse I ; AAC/CTA, AAC/CAA, AAG/CTA) used in this study revealed 176 reliable AFLP markers, 42.0% of which were polymorphic. 74 polymorphisms out of 176 scored DNA fragments were enough to clearly discriminate between two Atractylodes species.

Keywords

References

  1. Bang KH, Kim YG, Park HW, Seong NS, Cho JH, Kim HS, Cho YG (2001) Classification of safflower (Carthamus tinctorious L,J collections by RAPD analysis. Kor. J. Med. Crop Sci. 9:225-231
  2. Bang KH, Yu HS, Koo DH, Cho]H, Park HW, Park SI, Kim HS (2002) Selection of RAPD marker to discriminate the boltingresistant varieties and commercial dried medicinal materials of Angelica species. Korean J. Med, Crop Sci. 10:46-50
  3. Cervera MT, Cabezas JA, Sancha SJ, Martinez de Toda F, Martinez-Zapater JM (1998) Application of AFLPs to the characterization of grapevine Vitis vinifera L. genetic resources. A case study with accessions from Rioja (Spain). Theor. Appl, Genet. 97:51-59 https://doi.org/10.1007/s001220050866
  4. Cole CT, Kuchenreuther MA (2001) Molecular markers reveal little genetic differentiation among Aconitum noveboracense and A. columbianum (Ranunculaceae) populations. Am. J. Bot. 88:337-347 https://doi.org/10.2307/2657023
  5. Dellaporta SL (1983) A plant DNA minipreparation: version. II. Plant Mol. BioI. Rep. 1:19-25 https://doi.org/10.1007/BF02712670
  6. Demeke T, Adams RP, Chibbar R (1992) Potential taxonomic use of random amplified polymorphic DNA (RAPD): a case study in Brassica. Theor. Appl. Genet. 84:990-994
  7. Doyle JJ, Doyle JL (1987) A rapid DNA isolation procedure for small quantities of fresh leaf tissue. Phytochem. Bull. 19:11-15
  8. Elisiario P, Justo E, Leitao J (1999) Identification of mandarin hybrids by isozyme and RAPD analysis. Sci. Hort. 81:287-299 https://doi.org/10.1016/S0304-4238(99)00013-8
  9. Gelsomina F, Alberto S, Alessandra B, Elisabetta A, Ivano M, Franca T (2003) RAPD analysis and flavonoid composition of Aconitum as an aid for taxonomic discrimination. Biochem, Syst, Ecol, 31:293-301 https://doi.org/10.1016/S0305-1978(02)00153-9
  10. Harrison RE, Luby JJ, Fumier GB, Hancock JF (1997) Morphological and molecular variation among populations of octoploid Fragaria virginiana and F. chiloensis (Rosaceae) from North America. Am. J. Bot. 84:612-620 https://doi.org/10.2307/2445897
  11. KardolusJP. van Eck HJ, den Berg van RG (1998) The potential of AFLPs biosysternatics: a first application in Solanum taxonomy (Solanaceae). Pl. Syst. Evol. 210:87-103 https://doi.org/10.1007/BF00984729
  12. Kim JH,Joung H, Kim HW, Lim YP (1998) Estimation of genetic variation and relationship in potato (Solanum Tuberosum L) cultivars using AFLP markers. Am. J. Potato Res. 75:107-112 https://doi.org/10.1007/BF02883885
  13. Lee MY, Im SH, Kim HK, Han KS, Choi YH, Ju YS, Oh SE, Ko BS (2002) The discrimination of Coisis semen and Coisis lacrima-jobi semen by the random amplified polymorphic DNAs and anatomical characteristics. Kor, J. Med, Crop Sci. 10:7-23
  14. Nicese FP, Hormaza JI, McGranahan GH (1998) Molecular characterization and genetic relatedness among walnut (juglans regia L.) genotypes based on RAPD markers. Euphytica 101:199-206 https://doi.org/10.1023/A:1018390120142
  15. Vos P, Hogers R, Bleeker M, Reijans M, van de Lee T, Homes M, Frijters A, Pot J, Peleman J, Kuiper M, Zabeau M (1995) AFLP: a new technique for DNA fingerprinting. Nucleic Acids Res. 23:4407-4414 https://doi.org/10.1093/nar/23.21.4407
  16. Williams JGK, Kubelik AR, Livak KJ, Rafalski JA, Tingey SV (1990) DNA polymorphism amplified by arbitrary primers are useful as genetic markers. Nucleic Acid Res. 18:6531-6535 https://doi.org/10.1093/nar/18.22.6531
  17. Yang X, Quiros C (1993) Identification and classification of celery cultivars with RAPD markers. Theor. Appl, Genet. 86:205-212
  18. Zhu J, Gale MD, Quarrie S,Jackson MT, Bryan GJ (1998) AFLP markers for the study of rice biodiversity. Theor, Appl. Genet. 96:602-611 https://doi.org/10.1007/s001220050778