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Updated: Aug 28, 2026

Isolation of Histone from Sorghum Leaf Tissue for Top Down Mass Spectrometry Profiling of Potential Epigenetic Markers
Published on: March 4, 2021
SNP-Based KASP Markers Reveal Genetic Diversity and Population Structure Among African Sorghum Breeding Lines and
Caleb Mugove Souta1,2, Zamalotshwa Goodness Thungo1, Julia Sibiya1
1College of Agriculture, Engineering and Science (CAES), University of KwaZulu-Natal (UKZN), Private Bag X01, Scottsville, Pietermaritzburg 3209, South Africa.
Abstract:
Sorghum is a strategic food-security and livestock-feed crop in Africa, and molecular characterization of its germplasm underpins genetic diversity assessment and hybrid parent selection. This study evaluated 106 sorghum accessions (23 A-lines, 28 B-lines, 32 R-lines, and 23 hybrids) from ICRISAT and Seed Co gene banks using 79 single nucleotide polymorphism (SNP)-based Kompetitive Allele-Specific PCR (KASP) markers. Genetic diversity, population structure, cluster analysis, and analysis of molecular variance (AMOVA) were assessed to support heterotic grouping. Gene diversity ranged from 0.23 in R-lines to 0.32 in hybrids, and polymorphic information content from 0.19 to 0.26, indicating moderate marker discriminatory power. Population structure analysis identified an optimum of K = 3: Cluster 1 comprised paired A- and B-lines forming a putative maintainer pool, Cluster 2 was dominated by R-lines forming a divergent restorer pool, and Cluster 3 formed a second seed-parent subgroup. AMOVA confirmed highly significant differentiation (ΦST = 0.55; p < 0.001), with molecular variance partitioned among the three clusters (44.0%), among individuals within clusters (45.2%), and among breeding-line types (10.8%). These findings provide a genomic framework for assigning sorghum accessions to putative heterotic groups and accelerating hybrid parent selection for climate-resilient sorghum production.
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