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Molecular characterization of creole inbred lines from Magdalena, Colombia using Inter Simple Sequence Repeats
C Pardey-Rodríguez1, B J Rivera Mesa1, A C Morillo2
1Universidad del Magdalena, Facultad de Ingeniería, Grupo de Investigación Fitotecnia del Trópico, Santa Marta, Magdalena, Colombia.
Abstract:
The success of hybrid breeding programs depends heavily on the genetic variability present in the breeding material. Molecular characterization is a key approach for conserving native germplasm and optimizing its use in crop improvement. At the University of Magdalena (Colombia), a collection of maize (Zea mays L.) inbred lines remains genetically uncharacterized. This study assessed the genetic diversity of 15 maize genotypes-14 inbred lines and one commercial hybrid-using seven Inter-Simple Sequence Repeat (ISSR) markers distributed throughout the genome. A total of 2.160 bands were amplified, with fragment sizes ranging from 200 to 1.500 base pairs. The percentage of polymorphic loci varied between 45% and 76.19%, and the expected heterozygosity (He) ranged from 0.17 to 0.39, indicating limited allelic diversity among lines. A fixation index (Fst) of 0.26 revealed moderate genetic differentiation, likely due to restricted gene flow and genetic drift from repeated selfing. Analysis of Molecular Variance (AMOVA) showed that 86% of the total genetic variation occurred within lines rather than between them. Cluster analysis using the UPGMA method grouped genotypes into two main clusters with several sub-clusters. The highest genetic similarity (Nei and Li coefficient = 0.63) was observed between two lines, indicating minimal divergence. Genotype distribution was not associated with geographic origin. These findings provide a foundation for selecting genetically divergent parental lines to enhance heterosis in maize hybrid breeding programs and highlight the value of molecular tools in characterizing and utilizing underexplored germplasm collections.
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