Javascript must be enabled to continue!
A 25K Wheat SNP Array Revealed the Genetic Diversity and Population Structure of Durum Wheat (Triticum turgidum subsp. durum) Landraces and Cultivars
View through CrossRef
Durum wheat, the world’s second most cultivated wheat species, is a staple crop, critical for global food security, including in Ethiopia where it serves as a center of diversity. However, climate change and genetic erosion threaten its genetic resources, necessitating genomic studies to support conservation and breeding efforts. This study characterized genome-wide diversity, population structure (STRUCTURE, principal coordinate analysis (PCoA), neighbor-joining trees, analysis of molecular variance (AMOVA)), and selection signatures (FST, Hardy–Weinberg deviations) in Ethiopian durum wheat by analyzing 376 genotypes (148 accessions) using an Illumina Infinium 25K single nucleotide polymorphism (SNP) array. A set of 7842 high-quality SNPs enabled the assessments, comparing landraces with cultivars and breeding populations. Results revealed moderate genetic diversity (mean polymorphism information content (PIC) = 0.17; gene diversity = 0.20) and identified 26 loci under selection, associated with key traits like grain yield, stress tolerance, and disease resistance. AMOVA revealed 80.1% variation among accessions, with no significant differentiation by altitude, region, or spike density. Landraces formed distinct clusters, harboring unique alleles, while admixture suggested gene flow via informal seed exchange. The findings highlight Ethiopia’s rich durum wheat diversity, emphasizing landraces as reservoirs of adaptive alleles for breeding. This study provides genomic insights to guide conservation and the development of climate-resilient cultivars, supporting sustainable wheat production globally.
Title: A 25K Wheat SNP Array Revealed the Genetic Diversity and Population Structure of Durum Wheat (Triticum turgidum subsp. durum) Landraces and Cultivars
Description:
Durum wheat, the world’s second most cultivated wheat species, is a staple crop, critical for global food security, including in Ethiopia where it serves as a center of diversity.
However, climate change and genetic erosion threaten its genetic resources, necessitating genomic studies to support conservation and breeding efforts.
This study characterized genome-wide diversity, population structure (STRUCTURE, principal coordinate analysis (PCoA), neighbor-joining trees, analysis of molecular variance (AMOVA)), and selection signatures (FST, Hardy–Weinberg deviations) in Ethiopian durum wheat by analyzing 376 genotypes (148 accessions) using an Illumina Infinium 25K single nucleotide polymorphism (SNP) array.
A set of 7842 high-quality SNPs enabled the assessments, comparing landraces with cultivars and breeding populations.
Results revealed moderate genetic diversity (mean polymorphism information content (PIC) = 0.
17; gene diversity = 0.
20) and identified 26 loci under selection, associated with key traits like grain yield, stress tolerance, and disease resistance.
AMOVA revealed 80.
1% variation among accessions, with no significant differentiation by altitude, region, or spike density.
Landraces formed distinct clusters, harboring unique alleles, while admixture suggested gene flow via informal seed exchange.
The findings highlight Ethiopia’s rich durum wheat diversity, emphasizing landraces as reservoirs of adaptive alleles for breeding.
This study provides genomic insights to guide conservation and the development of climate-resilient cultivars, supporting sustainable wheat production globally.
Related Results
Genetic diversity of Ethiopian durum wheat landraces
Genetic diversity of Ethiopian durum wheat landraces
Genetic diversity and population structure assessment in crops is essential for marker trait association, marker assisted breeding and crop germplasm conservation. We analyzed a se...
Genetic diversity and population structure analysis based on the high density SNP markers in Ethiopian durum wheat (Triticum turgidum ssp. durum)
Genetic diversity and population structure analysis based on the high density SNP markers in Ethiopian durum wheat (Triticum turgidum ssp. durum)
AbstractBackgroundEthiopia has been considered as a center of diversity and the second possible center of domestication of durum wheat. Genetic diversity and population structure a...
Genetic Diversity of Durum Wheat (Triticum turgidum L. ssp. durum, Desf) Germplasm as Revealed by Morphological and SSR Markers
Genetic Diversity of Durum Wheat (Triticum turgidum L. ssp. durum, Desf) Germplasm as Revealed by Morphological and SSR Markers
Ethiopia is considered a center of origin and diversity for durum wheat and is endowed with many diverse landraces. This research aimed to estimate the extent and pattern of geneti...
Enset Landrace Diversity and Ethno-Botanical Uses in Gedeo Zone, Southern Ethiopia
Enset Landrace Diversity and Ethno-Botanical Uses in Gedeo Zone, Southern Ethiopia
Enset (Ensete ventricosum (Welw.) Cheesman) is a monocarpic, perennial herbaceous plant in the Musaceae family. Ethiopia is the origin and center of enset diversity and is the only...
Comparison of Some Bread and Durum Wheat Cultivars in Absorption and Translocation of Cd
Comparison of Some Bread and Durum Wheat Cultivars in Absorption and Translocation of Cd
Abstract
Previous studies on the difference in accumulation and translocation of cadmium (Cd) among different wheat cultivars have typically focused on a small number of cu...
Harnessing genome-wide genetic diversity, population structure and linkage disequilibrium in Ethiopian durum wheat gene pool
Harnessing genome-wide genetic diversity, population structure and linkage disequilibrium in Ethiopian durum wheat gene pool
Yanyang Liu, Henan Academy of Agricultural Sciences (HNAAS), China; Landraces are an important genetic source for transferring valuable novel genes and alleles required to enhance ...
Variability and Site Dependence of Grain Mineral Contents in Tetraploid Wheats
Variability and Site Dependence of Grain Mineral Contents in Tetraploid Wheats
Crop production and natural resource use, especially in developing countries, represents one of the most important food sources for humans. In particular, two wheat species (tetrap...
Novel design of imputation-enabled SNP arrays for breeding and research applications supporting multi-species hybridisation
Novel design of imputation-enabled SNP arrays for breeding and research applications supporting multi-species hybridisation
AbstractArray-based SNP genotyping platforms have low genotype error and missing data rates compared to genotyping-by-sequencing technologies. However, design decisions used to cre...

