Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Novel GBS-Based SNP Markers for Finger Millet and Their Use in Genetic Diversity Analyses

Domaine:

agriculture

Type de record:

dataset
Créateur:
HafTekKasRod
Éditeur:
Fro
Hôte:
Eleusine coracana (L.) Gaertn., commonly known as finger millet, is a multipurpose crop used for food and feed. Genomic tools are required for the characterization of crop gene pools and their genomics-led breeding. High-throughput sequencing-based characterization of finger millet germplasm representing diverse agro-ecologies was considered an effective method for determining its genetic diversity, thereby suggesting potential candidates for breeding. In this study, the genotyping-by-sequencing (GBS) method was used to simultaneously identify novel single nucleotide polymorphism (SNP) markers and genotype 288 finger millet accessions collected from Ethiopia and Zimbabwe. The accessions were characterized at individual and group levels using 5,226 bi-allelic SNPs, with a minimum allele frequency (MAF) of above 0.05, distributed across 2,500 scaffolds of the finger millet reference genome. The polymorphism information content (PIC) of the SNPs was 0.23 on average, and a quarter of them have PIC values over 0.32, making them highly informative. The grouping of the 288 accessions into seven populations based on geographic proximity and the potential for germplasm exchange revealed a narrow range of observed heterozygosity (Ho; 0.09–0.11) and expected heterozygosity (He) that ranged over twofold, from 0.11 to 0.26. Alleles unique to the different groups were also identified, which merit further investigation for their potential association with desirable traits. The analysis of molecular variance (AMOVA) revealed a highly significant genetic differentiation among groups of accessions classified based on the geographic region, country of origin, days to flowering, panicle type, and Al tolerance ( p < 0.01). The high genetic differentiation between Ethiopian and Zimbabwean accessions was evident in the AMOVA, cluster, principal coordinate, and population structure analyses. The level of genetic diversity of finger millet accessions varies moderately among locations within Ethiopia, with accessions from the northern region having the lowest level. In the neighbor-joining cluster analysis, most of the improved cultivars included in this study were closely clustered, probably because they were developed using genetically less diverse germplasm and/or selected for similar traits, such as grain yield. The recombination of alleles via crossbreeding genetically distinct accessions from different regions of the two countries can potentially lead to the development of superior cultivars.

Visit

doi.org

Languages

Amharic

Licenses

https://creativecommons.org/licenses/by/4.0/

Similaires

Novel Expressed Sequence Tag-Derived and Other Genomic Simple Sequence Repeat Markers Revealed Genetic Diversity in Ethiopian Finger Millet Landrace Populations and CultivarsIdentification of SNP and SSR markers in finger millet using Next generation sequencing technologiesExploiting Genetic Diversity for Blast Disease Resistance Sources in Finger Millet (<i>Eleusine coracana</i>)Genetic diversity and population structure analyses of South African Bambara groundnut (Vigna subterranea [L]. Verdc.) collections using SNP markersSNP-Based KASP Markers Reveal Genetic Diversity and Population Structure Among African Sorghum Breeding Lines and HybridsGenetic Diversity in Finger Millet Collections for Agro-Morphological, Nutritional Traits, and its Seed Exchange Systems in Tigray, Ethiopia

Novel Expressed Sequence Tag-Derived and Other Genomic Simple Sequence Repeat Markers Revealed Genetic Diversity in Ethiopian Finger Millet Landrace Populations and Cultivars

Finger millet ( Eleusine coracana (L.) Geartn.) is a self-pollinating amphidiploid crop cultivated

Identification of SNP and SSR markers in finger millet using Next generation sequencing technologies

Finger millet is an important cereal crop in eastern Africa and southern India with excellent grain

Exploiting Genetic Diversity for Blast Disease Resistance Sources in Finger Millet (<i>Eleusine coracana</i>)

Finger millet blast, caused by Magnaporthe grisea, is the most important disease of finger millet in

Genetic diversity and population structure analyses of South African Bambara groundnut (Vigna subterranea [L]. Verdc.) collections using SNP markers

SNP-Based KASP Markers Reveal Genetic Diversity and Population Structure Among African Sorghum Breeding Lines and Hybrids

Sorghum is a strategic food-security and livestock-feed crop in Africa, and molecular characterizati

Genetic Diversity in Finger Millet Collections for Agro-Morphological, Nutritional Traits, and its Seed Exchange Systems in Tigray, Ethiopia

Finger millet, despite being one of the most neglected and underutilized crops worldwide, serves as