Characterization of Gladiolus Germplasm Using Morphological, Physiological, and Molecular Markers

Estimation of variability and genetic relationships among breeding materials is one of the important strategies in crop improvement programs. Morphological (plant height, spike length, a number of florets/spike), physiological (chlorophyll content, chlorophyll fluorescence, and rapid light curve par...

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Veröffentlicht in:Biochemical genetics 2018-04, Vol.56 (1-2), p.128-148
Hauptverfasser: Singh, Niraj, Pal, Ashish K., Roy, R. K., Tewari, S. K., Tamta, Sushma, Rana, T. S.
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Sprache:eng
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Zusammenfassung:Estimation of variability and genetic relationships among breeding materials is one of the important strategies in crop improvement programs. Morphological (plant height, spike length, a number of florets/spike), physiological (chlorophyll content, chlorophyll fluorescence, and rapid light curve parameters) and Directed amplification of minisatellite DNA (DAMD) markers were used to investigate the relationships among 50 Gladiolus cultivars. Cluster analysis based on morphological data, physiological characteristics, molecular markers, and cumulative data discriminated all cultivars into seven, five, seven, and six clusters in the unweighted pair-group method using arithmetic mean (UPGMA) dendrogram, respectively. The results of the principal coordinate analysis (PCoA) also supported UPGMA clustering. Variations among the Gladiolus cultivars at phenotypic level could be due to the changes in physiology, environmental conditions, and genetic variability. DAMD analysis using 10 primers produced 120 polymorphic bands with 80% polymorphism showing polymorphic information content (PIC = 0.28), Marker index (MI = 3.37), Nei’s gene diversity ( h  = 0.267), and Shannon’s information index ( I  = 0.407). Plant height showed a positive significant correlation with Spike length and Number of florets/spike ( r  = 0.729, p  
ISSN:0006-2928
1573-4927
DOI:10.1007/s10528-017-9835-4