Use of multivariate analysis in mineral accumulation of rocket (Eruca sativa) accessions

The leafy vegetables contain high amount of mineral elements and health promoting compound. To solve nutritional problems in diet and reduced malnutrition among human population selection of specific cultivar among species would be help increasing elemental delivery in the human diet. While rocket p...

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Veröffentlicht in:Genetika (Beograd) 2011, Vol.43 (3), p.437-448
Hauptverfasser: Bozokalfa Kadri, M., Ege University, İzmir (Turkey). Faculty of Agriculture, Department of Horticulture, Eşiyok, D., Ege University, İzmir (Turkey). Faculty of Agriculture, Department of Horticulture, Yağmur, B., Ege University, Izmir (Turkey). Faculty of Agriculture, Department of Soil Science
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Sprache:eng
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Zusammenfassung:The leafy vegetables contain high amount of mineral elements and health promoting compound. To solve nutritional problems in diet and reduced malnutrition among human population selection of specific cultivar among species would be help increasing elemental delivery in the human diet. While rocket plant observes several nutritional compounds no significant efforts have been made for genetic diversity for mineral composition of rocket plant accessions using multivariate analyses technique. The objective of this work was to evaluate variability for mineral accumulation of rocket accessions revealed by multivariate analysis to use further breeding program for achieve improving cultivar in targeting high nutrient concentration. A total twelve mineral element and twenty-three E. sativa accessions were investigated and considerable variation were observed in the most of concentration the principal component analysis explained that 77.67% of total variation accounted for four PC axis. Rocket accessions were classifies into three groups and present outcomes of experiments revealed that the first three principal components were highly valid to classify the examined accessions and separating mineral accumulations. Significant differences exhibited in mineral concentration among examined rocket accessions and the result could allow selecting those genotypes with higher elements.
ISSN:0534-0012
1820-6069
DOI:10.2298/GENSR1103437B