Uncovering alleles beneficial for seed characteristics in durum wheat (Triticum durum Desf.) landraces and cultivars

被引:0
作者
Youssef Chegdali
Hassan Ouabbou
Abdelkhalid Essamadi
Ali Sahri
Susanne Dreisigacker
Carlos Guzmán
机构
[1] Institut National de la Recherche Agronomique (INRA),Laboratory of Gene Bank, Crop Physiology and Genetic Resources
[2] Hassan 1,Laboratory of Biochemistry and Neuroscience, Naturel Resources and Environnement, Faculty of Sciences and Technology
[3] University,Departamento de Genética, Escuela Técnica Superior de Ingeniería Agronómica y de Montes, Edificio Gregor Mendel, Campus de Rabanales
[4] Global Wheat Program,undefined
[5] CIMMYT,undefined
[6] Universidad de Córdoba,undefined
[7] CeiA3,undefined
来源
Euphytica | 2024年 / 220卷
关键词
Durum wheat; Seed characteristics; Favorable alleles; Grain yield;
D O I
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学科分类号
摘要
Landraces and ancient cultivars offer the potential for re-selecting key traits and alleles that might enhance grain yield. A durum wheat collection consisting of 18 landraces (LAN), 5 Moroccan cultivars (MC), and 11 North American cultivars (NAC) was analyzed for seed characteristics and 14 loci associated with grain weight. The study found significant genetic variation in seed characteristics, with the NAC and MC cultivars having higher mean values compared to LAN. Several accessions displayed promising traits for grain weight and size. The genotyping results showed that there were four polymorphic loci and ten monomorphic loci. The polymorphic loci were Wx-B1, TaCwi-4A, TaGS5-A1, and TaSus1-7B. The monomorphic loci included Wx-A1, TaCwi-A1, TaGW2, TGW6-4A, TaSus1-7A-1185, TaSus1-7A-1599, TaSus1-7A-3544, TaSus2-2A, TaSus2-2B, and TGW6. The highest frequencies of desirable alleles were found in the LAN group, followed by MC and NAC. LAN carried the desirable alleles, Wx-B1b, Hap-4A-T, TaGS5-A1b, and Hap-T, at the Wx-B1, TaCwi-4A, TaGS5-A1, and TaSus1-7B loci, respectively. The number of favorable alleles in each accession was significant, with LAN accession MGB-3083 carrying up to 12 favorable alleles. Additionally, four accessions had 11 favorable alleles, namely MC MGB-22, LAN MGB-3101, and two NAC lines (MGB-66035 and MGB-6606). In conclusion, the current study offers insights for improving durum wheat yield by identifying high genetic variation among desirable characteristics and alleles among accessions, as well as highlighting accessions with excellent allele combinations of important yield-related genes.
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共 179 条
[31]  
Chegdali Y(2022), in wheat: its function, selection and evolution in global breeding revealed by haplotype analysis Crop J 14 1135-undefined
[32]  
Ouabbou H(2012)Fast integration and accumulation of breeding beneficial alleles through ab-namic strategy in wheat Mol Breed 10 399-undefined
[33]  
Essamadi A(2016)Molecular characterization of 87 functional genes in wheat diversity panel and their association with phenotypes under well-watered and water-limited conditions Plant Biotechnol J 12 1-undefined
[34]  
Chunduri V(2021)Weight of individual wheat grains estimated from high-throughput digital images of grain area Plants 9 681-undefined
[35]  
Sharma N(2022)The influence of the structure of selected polymers on their properties and food-related applications Agronomy 1 217-undefined
[36]  
Garg M(2019)Variation in allelic frequencies at loci associated with kernel weight and their effects on kernel weight-related traits in winter wheat Agronomy 42 287-undefined
[37]  
Cristina D(2015)Dissection of superior alleles for yield-related traits and their distribution in important cultivars of wheat by association mapping Nature Plants 78 1189-undefined
[38]  
Ciuca M(1992)Regulation of amylose content by single mutations at an active site in the Wx-B1 gene in a tetraploid wheat mutant Jpn J Breed 56 2257-undefined
[39]  
Mandea V(2001)De novo design of future rapeseed crops: challenges and opportunities Cereal Chem 10 287-undefined
[40]  
Cornea C-P(2016)Characterization of a cell wall invertase gene Crop Sci 65 982-undefined