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Modified AFLP technique for fingerprinting of Anemone coronaria

Published online by Cambridge University Press:  12 February 2007

J. Fang*
Affiliation:
Nanjing Agricultural University, Nanjing, 210095, China
T. Paz
Affiliation:
Agricultural Research Organization, The Volcani Center, P.O.B. 6, Bet-Dagan 50 250, Israel
*
*Corresponding author: Department of Botany and Plant Sciences, University of California–Riverside, Riverside, CA 92 521, USA. E-mail: fanggg@njau.edu.cn

Abstract

We successfully generated clear amplified fragment length polymorphism (AFLP) profiles of Anemone coronaria using only a single restriction enzyme (EcoR I). Four primer combinations generated 571 bands in 37 anemone accessions with an average 142.75 bands per primer combination. Polymorphism among the 37 samples was very high (98.15%). This high polymorphism showed that the one-enzyme AFLP method is effective for the assessment of genetic diversity as well as cultivar differentiation of anemone. We observed 26 bands which differentiated between fingerprints derived from leaf and corm DNA of eight plant individuals. However, the low percentage of such bands showed that anemone corms can also be used to evaluate anemone germplasm using AFLP markers.

Type
Short communication
Copyright
Copyright © NIAB 2005

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References

David, L, Rajasekaran, P, Fang, J, Hillel, J and Lavi, U (2001) Polymorphism in ornamental and common carp strains (Cyprinus carpio L.) as revealed by AFLP analysis and a set of microsatellite markers. Molecular Genetics and Genomics 266: 353362.CrossRefGoogle Scholar
Horovitz, A (1973) Introduction of Wild Genes into Commercial Anemone coronaria L. Comparison Progress Report, U.S.–Israel Binational Science Foundation (BSF) Project 47. Israel, 37 pp.Google Scholar
Kashkush, K, Fang, J, Tomer, E, Hillel, J and Lavi, U (2001) Cultivar identification and genetic map of mango (Mangifera indica). Euphytica 122: 129136.CrossRefGoogle Scholar
Lockhart, PJ and McLenacham, PA (1997) Isolating polymorphic plant DNA fragments identified using AFLP technology without acrylamide gels: markers for evolutionary studies. Focus 19: 7071.Google Scholar
Murray, MG and Thompson, WF (1980) Rapid isolation of high molecular weight plant DNA. Nucleic Acids Research 8: 43214325.CrossRefGoogle ScholarPubMed
Vos, P, Hogers, R, Bleeker, M, Reijans, M, Van de Lee, T, Hornes, M, Frijters, A, Pot, J, Peleman, J, Kuiper, M and Zabeau, M (1995) AFLP: a new technique for DNA fingerprinting. Nucleic Acids Research 23: 44074414.CrossRefGoogle ScholarPubMed