Hamid Khazaei, Ulrika Carlson-Nilsson, Alan H Schulman
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引用次数: 0
摘要
背景:植物诱变会产生新的等位基因,从而增加遗传和表型的多样性。蚕豆(Vicia faba L.)参考基因组的可用性和不断增加的附加基因组资源提高了突变体收集的科学和实用价值。我们的目标是对 Jan Sjödin(1934-2023 年)半个多世纪前开发和鉴定的历史性蚕豆突变体收集进行基因型和形态表型,以提高其对研究人员的价值。我们使用高通量单基因组富集技术(SPET)对该基因组进行了基因分型:结果:我们使用了 11,073 个横跨蚕豆基因组的单核苷酸多态性标记,对 52 个突变品系和背景品系 cv. Primus 进行了基因分型。Primus。观察到了一系列花、种子、叶片和托叶突变。种群结构分析表明,种群结构较浅,没有主要亚种群。主成分和聚类分析显示,在较小程度上,突变体按其表型聚类:突变体的表型变异和浅层结构表明,Sjödin蚕豆种群有可能在蚕豆育种以及遗传和功能研究中发挥重要作用。
The Jan Sjödin faba bean mutant collection: morphological and molecular characterization.
Background: Plant mutagenesis creates novel alleles, thereby increasing genetic and phenotypic diversity. The availability of the faba bean (Vicia faba L.) reference genome and a growing set of additional genomic resources has increased the scientific and practical value of mutant collections. We aimed to genotype and morphologically phenotype a historical faba bean mutant collection developed and characterized by Jan Sjödin (1934-2023) over half a century ago in order to increase its value to researchers. The collection was genotyped using high-throughput single-primer enrichment technology (SPET) assays.
Results: We used 11,073 informative single nucleotide polymorphism (SNP) markers spanning the faba bean genome to genotype 52 mutant lines along with the background line, cv. Primus. A range of flower, seed, leaf, and stipule mutations were observed. The analysis of population structure revealed a shallow structure with no major subpopulations. Principal component and cluster analyses revealed, to a minor extent, that the mutants clustered by their phenotype.
Conclusions: The mutants' phenotypic variation and shallow structure indicate that the Sjödin faba bean collection has the potential to play a significant role in faba bean breeding and in genetic and functional studies.
HereditasBiochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.80
自引率
3.70%
发文量
0
期刊介绍:
For almost a century, Hereditas has published original cutting-edge research and reviews. As the Official journal of the Mendelian Society of Lund, the journal welcomes research from across all areas of genetics and genomics. Topics of interest include human and medical genetics, animal and plant genetics, microbial genetics, agriculture and bioinformatics.