Genetic diversity and population structure of Tunisian wild Kermes oak (Quercus coccifera L.): Assessment by ISSR molecular markers and implication for conservation

Author:

Flihi Jihène,Rhimi Awatef,Yangui Islem,Messaoud Chokri,Ben ElHadj Ali Imen

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,General Medicine

Reference50 articles.

1. Belahbib N, Ouassou A, Dahmani J, Douira A (2004) Contribution à l’étude de l’introgression génétique entre Quercus suber L. et Q. rotundifolia (Lamk.) Trabut au Maroc par l’utilisation des marqueurs microsatellites. Bulletin de l’institut scientifique, Rabat, Sect Sci de la vie, 26: 31–34

2. Hasnaoui B (1992) Chênaies du nord de la Tunisie: écologie et régénération. Thèse de doctorat en Sciences naturelles. Université De Provence-Aix-Marseille I, p 202

3. Belahbib N, Pemonge MH, Ouassou A, Sbay H, Kremer A, Petit RJ (2001) Frequent cytoplasmic exchanges between oak species that are not closely related: Quercus suber and Q. ilex in Morocco. Mol Ecol 10:2003–2012

4. Mhamdi S, Brendel O, Montpied P, Ghouil-Amimi H, Hasnaoui I, Dreyer E (2013) Leaf morphology displays no detectable spatial organization in the relict Quercus afares Pomel compared to the co-occurring parental species Q. canariensis Willd. and Q. suber L. Ann For Sci 70:675–684

5. Ortego J, Bonal R (2010) Natural hybridization between kermes (Quercus coccifera L.) and holm oaks (Q. ilex L.) revealed by microsatellite markers. Plant Biol 12:234–238

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