Genetic Resources and Crop Evolution

, Volume 53, Issue 7, pp 1413–1418 | Cite as

Genetic Diversity within and Between Populations of Lathyrus genus (Fabaceae) Revealed by ISSR Markers

  • Y. Belaïd
  • N. Chtourou-Ghorbel
  • M. Marrakchi
  • N. Trifi-Farah
Article

Abstract

In order to evaluate the genetic diversity in Lathyrus genus, the Inter Simple Sequence Repeats method (ISSR) was exploited in five populations. These consisted of two cultivated species belonging to section Lathyrus (L. sativus L. and L. cicera L.) and a wild one belonging to the section Clymenum (L. ochrus DC.). Two 3′anchored ISSR primers and two unanchored ones, generated a total of 60 useful polymorphic DNA bands. Our data provide evidence of high molecular polymorphism at the intra- and the inter-specific levels showing that both wild and cultivated forms constitute an important pool of diversity. Moreover, among the generated DNA bands, a 500 bp band, totally absent in the banding patterns of the section Clymenum, appears to be a molecular marker of section Lathyrus. Results provided for lineage and suggest recent origin of these species that might have evolved from a common ancestor producing both L. ochrus species and the two other species L. sativus and L. cicera. These relationships support previous studies based on morphological variation and molecular analysis.

Keywords

Genetic diversity ISSR Lathyrus cicera Lathyrus ochrus Lathyrus sativus Lathyrus Phylogeny 

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References

  1. I. Alkadi, Etude du polymorphisme biochimique de quelques espèces du genre Lathyrus. France: Thèse de doctoratUniversité de Pau et des pays de l’Adour (1993).Google Scholar
  2. Allkin R., Macfarlane T.D., White R.J., Bisby F.A. and Adey M.E. 1985. The geographical distribution of Lathyrus. Vicieae Database Project Publication No. 6. University of Southampton.Google Scholar
  3. C.B. Asmussen and A. Liston, Chloroplast DNA characters, phylogeny and classification of Lathyrus (Fabaceae). Am. J. Bot. 85 (1998) 387-401CrossRefGoogle Scholar
  4. N. Ben Brahim, A. Salhi, N. Chtourou, D. Combes and M. Marrakchi, Isozymic polymorphism and phylogeny of 10 Lathyrus species. Genet. Resour. Crop Evol. 49 (2002) 427-436CrossRefGoogle Scholar
  5. N. Ben Brahim, Biologie de la reproduction, Polymorphisme et Phylogénie chez les espèces cultivées et spontanées du genre Lathyrus. Tunisie: Thèse de Doctorat d’EtatFaculté des Sciences de Tunis (2003).Google Scholar
  6. C.G. Campbell, R.B. Mehra, S.K. Agrawal, Y.Z. Chen, A.N. Abdel Moneim, H.I.T. Khawaja, C.R. Yadov, J.U. Tay and W.A. Araya, Current status and future strategy in breeding grasspea (Lathyrus sativus). Euphytica 73 (1994) 167-175CrossRefGoogle Scholar
  7. M.A. Chowdhury and A.E. Slinkard, Genetics of isozymes in grass pea. J. Hered. 91 (2000) 142-145PubMedCrossRefGoogle Scholar
  8. N. Chtourou-Ghorbel, N. Ben Brahim, M. Boussaid and M. Marrakchi, Flower pigmentation analysis in populations of Lathyrus sativus L. and Lathyrus cicera L. Ann. Inst. Nat. Rech. Agr. Tunisie 73 (2000) 3-15Google Scholar
  9. N. Chtourou-Ghorbel, B. Lauga, D. Combes and M. Marrakchi, Comparative genetic diversity studies in the genus Lathyrus using RFLP and RAPD markers. Lathyrus and Lathyrism Newsletter 2 (2001) 1-7Google Scholar
  10. N. Chtourou-Ghorbel, B. Lauga, N. Ben Brahim, D. Combes and M. Marrakchi, Genetic variation analysis in the genus Lathyrus using RADP markers. Genet. Resour. Crop Evol. 49 (2002a) 363-370CrossRefGoogle Scholar
  11. N. Chtourou-Ghorbel, B. Lauga, D. Combes, N. Ben Brahim and M. Marrakchi, Genetic diversity in selected Lathyrus species revealed by restriction fragment length polymorphism (RFLP) markers. J. Genet. Breed. 56 (2002b) 279-286Google Scholar
  12. A.M. Croft, E.C.K. Pang and P.W.J. Taylor, Molecular analysis of Lathyrus sativus L. (grass pea) and related Lathyrus species. Euphytica 107 (1999) 167-176CrossRefGoogle Scholar
  13. S.L. Dellaporta, J. Wood and J.B. Hicks, A plant DNA minipreparation: version II. Plant Mol. Biol. Rep. 1 (1983) 19-21Google Scholar
  14. J. Felsenstein, PHYLIP (Phylogeny Interference Package) version 3.57C. Seattle: University of Washington (1995).Google Scholar
  15. S. Ghariani, N. Trifi-Farah, M. Chakroun, S. Marghali and M. Marrakchi, Genetic diversity in Tunisian perennial ryegrass revealed by ISSR markers. Genet. Resour. Crop Evol. 50 (2003) 809-815CrossRefGoogle Scholar
  16. D.J. Goyder, The genus Lathyrus. In: A.K. Kaul and D. Combes (eds.) Lathyrus and Lathyrism. New York: Third World Medical Research Foundation (1986) pp. 334Google Scholar
  17. M.T. Jackson and A.G. Yunus, Variation in the grasspea (Lathyrus sativus L.) and wild species. Euphytica 33 (1984) 549-559CrossRefGoogle Scholar
  18. F. Kupicha, The infrageneric structure of Lathyrus. Notes Roy. Bot. Gard. Edinb. 41 (1983) 209-244Google Scholar
  19. M.S. Lal, I. Agrawal and M.W. Chitale, Genetic improvement of chickling vetch (Lathyrus sativus L.) in Madhya PradeshIndia. In: A.K. Kaul and D. Combes (eds.) Lathyrus and Lathyrism. New York: Third World Medical Research Foundation (1986) pp. 146-160Google Scholar
  20. S. Moreno, J.P. Martin and J.M. Ortiz, Inter-simple sequence repeats PCR for characterization of closely related grapevine germplasm. Euphytica 101 (1998) 117-125CrossRefGoogle Scholar
  21. M. Nei and W.H. Li, Mathematical mode for studying genetic variation in terms of restriction endonucleases. Proc. Natl. Acad. Sci. USA 76 (1979) 3269-3273CrossRefGoogle Scholar
  22. I. Pasakinskiene, C.M. Griffiths, A.J.E. Bettanny, V. Paplauskiene and M.W. Humphreys, Anchored simple-sequence repeats as primers to generate specific DNA markers in Lolium and Fetuca grasses. Theor. Appli. Genet. 100 (2000) 384-390CrossRefGoogle Scholar
  23. U. Plitmann, C.C. Heyn and H. Weinberger, Comparative taxonomy of some wild species allied to Lathyrus sativus. In: A.K. Kaul and D. Combes (eds.) Lathyrus and Lathyrism. New York: Third World Medical Research Foundation (1986) pp. 334Google Scholar
  24. Pottier-Alapetite G. 1979. Flore de la Tunisie. Angiospermes Dicotylédones. Apétale-Dialypétales. Imp. Offic. Rep. Tunisie, pp. 542.Google Scholar
  25. J. Sambrook, E.F. Fritsch and T. Maniatis, Molecular cloning: a Laboratory Manual. New York: Cold Spring Harbor Laboratory Press (1989).Google Scholar
  26. S. Zehdi, M. Trifi, A. Ould Mohamed Salem, A. Rhouma and M. Marrakchi, Survey of inter simple sequence repeats (ISSR) in Tunisian date-palms (Phoenix dactylifera L.). J. Genet. Breed. 56 (2002) 77-83Google Scholar
  27. E. Zietkiewez, A. Rafalski and D. Labuda, Genome fingerprinting by simple sequence repeats (SSR)-anchored polymerase chain reaction amplification. Genomics 20 (1994) 176-183CrossRefGoogle Scholar

Copyright information

© Springer 2005

Authors and Affiliations

  • Y. Belaïd
    • 1
  • N. Chtourou-Ghorbel
    • 1
  • M. Marrakchi
    • 1
  • N. Trifi-Farah
    • 1
  1. 1.Laboratoire de Génétique Moléculaire, Immunologie et Biotechnologie, Faculté des Sciences de TunisCampus UniversitaireEl ManarTunisie

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