Natural Resources

Natural Resources

ISSN Print: 2158-706X
ISSN Online: 2158-7086
www.scirp.org/journal/nr
E-mail: nr@scirp.org
"Genetic Relationships between Cultivated and Wild Olive Trees (Olea Europaea L. Var. Europaea and Var. Sylvestris) Based on Nuclear and Chloroplast SSR Markers"
written by Hedia Hannachi, Catherine Breton, Monji Msallem, Salem Ben El Hadj, Mohamed El Gazzah, Andre Berville,
published by Natural Resources, Vol.1 No.2, 2010
has been cited by the following article(s):
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[3] Current Status of Biodiversity Assessment and Conservation of Wild Olive (Olea europaea L. subsp. europaea var. sylvestris)
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[4] Biosorption potential of olive leaves as a novel low-cost adsorbent for the removal of hexavalent chromium from wastewater
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[6] How to Choose a Good Marker to Analyze the Olive Germplasm (Olea europaea L.) and Derived Products
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[7] Algerian Olive Germplasm and Its Relationships with the Central-Western Mediterranean Varieties Contributes to Clarify Cultivated Olive Diversification
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[8] Irrigation effects on phenolic profile and extra virgin olive oil quality of''Chemlali''variety grown in South Tunisia
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[9] Influencia de la variedad, régimen hídrico, estado de maduración y año de cosecha en el equilibrio entre actividades oxidantes-antioxidantes de la aceituna mediante …
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[10] Recovery, Assessment, and Molecular Characterization of Minor Olive Genotypes in Tunisia
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[11] A Hot Spot of Olive Biodiversity in the Tunisian Oasis of Degache
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[12] Amino and fatty acids composition of olive stones for the discrimination of Olea europaea subsp. europaea varieties
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[13] Genetic diversity of dog rose (Rosa canina L.) using ISSR markers
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[14] ارزیابی تنوع ژنتیکی نسترن وحشی با استفاده از نشانگر ISSR‎
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[15] Molecular markers: an important tool to analyze the genetic diversity of local Tunisian olive varieties
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[16] Assessment of genetic diversity among Crataegus genotypes by Application of ISSR markers in Ardabil province
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[17] Παρακολούθηση των πληθυσμών του δάκου της ελίας (Bactrocera oleae) στη Μαγνησία και σύγκριση της αποτελεσματικότητας ορισμένων συστημάτων …
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[19] Comparative chloroplast genomics of series Sakawanum in genus Asarum (Aristolochiaceae) to develop single nucleotide polymorphisms (SNPs) and simple …
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[20] Molecular diversity and gene flow within and among different subspecies of the wild olive (Olea europaea L.): A review
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[21] ISSR Analysis for Determination of genetic diversity in 29 olive (Olea europaea L.) cultivars
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[22] Caracterización morfológica y molecular de variedades italianas de olivo (Olea europaea L.) instaladas en el jardín de introducción de INIA Las Brujas
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[23] Stone diversity in wild and cultivated olive trees (Olea europaea L.).
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[24] Assessment of the genetic relationship of Turkish olives (Olea europaea subsp. europaea) cultivars based on cpDNA trnL-F regions
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[25] DNA Fingerprinting as a Novel Tool for Olive and Olive Oil Authentication, Traceability, and Detection of Functional Compounds
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[26] Exploring olive trees genetic variability in the South East of Tunisia
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[27] Stone diversity in wild and cultivated olive trees (Olea europaea L.)
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[28] Genetic Relationships between Selected Wild Olive Types and two Cultivars Grown in Moseif Region/Syria using ISSR
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[29] Single vs multiple independent olive domestications: the jury is (still) out
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[30] Sistemas complejos: una aplicación para el análisis de los balances energéticos y económicos en el agrosistema de olivar de Estepa
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[31] Flowering in the wild olive (Olea europaea L.) tree (oleaster): Phenology, flower abnormalities and fruit set traits for breeding the olive
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[32] Genetic diversity and relationships of wild and cultivated olives in Turkey
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[33] Synergistic therapy of enalapril and Cordyceps sinensis in the improvement of renal function in chronic allograft nephropathy patient
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[34] Genetic structure of Iranian olive cultivars and their relationship with Mediterranean's cultivars revealed by SSR markers
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[35] Fatty Acids, Sterols, Polyphenols, and Chlorophylls of Olive Oils Obtained from Tunisian Wild Olive Trees (Olea europaea L. Var. Sylvestris)
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[36] Oil, protein, antioxidants and free radical scavenging activity of stone from wild olive trees (Olea europaea L.)
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[37] Identification of a feral olive dehydrin gene and its development as a tool for drought tolerance in Arabidopsis thaliana
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[38] Oleiculture in progress
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[39] In Silico chloroplast SSRs mining of Olea species
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[40] Oleiculture in progress.
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[41] CHAPTER FIFTEEN IDENTIFICATION OF BIODIVERSITY
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[42] Effects of tegument, endosperm, cold treatment and harvest date on germination of wild olive
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