Hashemi Seyed Mohammad, Perry Gregory, Rajcan Istvan, Eskandari Milad
Department of Plant Agriculture, Ontario Agriculture College, University of Guelph, Guelph, ON, Canada.
Front Plant Sci. 2022 Jul 7;13:945471. doi: 10.3389/fpls.2022.945471. eCollection 2022.
Multi-Parent Advanced Generation Inter-Cross (MAGIC) populations are emerging genetic platforms for high-resolution and fine mapping of quantitative traits, such as agronomic and seed composition traits in soybean ( L.). We have established an eight-parent MAGIC population, comprising 721 recombinant inbred lines (RILs), through conical inter-mating of eight soybean lines. The parental lines were genetically diverse elite cultivars carrying different agronomic and seed composition characteristics, including amino acids and fatty acids, as well as oil and protein concentrations. This study aimed to introduce soybean MAGIC (SoyMAGIC) population as an unprecedented platform for genotypic and phenotypic investigation of agronomic and seed quality traits in soybean. The RILs were evaluated for important seed composition traits using replicated field trials during 2020 and 2021. To measure the seed composition traits, near-infrared reflectance (NIR) was employed. The RILs were genotyped using genotyping-by-sequencing (GBS) method to decipher the genome and discover single-nucleotide polymorphic (SNP) markers among the RILs. A high-density linkage map was constructed through inclusive composite interval mapping (ICIM). The linkage map was 3,770.75 cM in length and contained 12,007 SNP markers. Chromosomes 11 and 18 were recorded as the shortest and longest linkage groups with 71.01 and 341.15 cM in length, respectively. Observed transgressive segregation of the selected traits and higher recombination frequency across the genome confirmed the capability of MAGIC population in reshuffling the diversity in the soybean genome among the RILs. The assessment of haplotype blocks indicated an uneven distribution of the parents' genomes in RILs, suggesting cryptic influence against or in favor of certain parental genomes. The SoyMAGIC population is a recombined genetic material that will accelerate further genomic studies and the development of soybean cultivars with improved seed quality traits through the development and implementation of reliable molecular-based toolkits.
多亲本高级世代互交(MAGIC)群体是新兴的遗传平台,用于对数量性状进行高分辨率精细定位,如大豆(Glycine max (L.) Merr.)的农艺性状和种子成分性状。我们通过八个大豆品系的锥形互交,建立了一个包含721个重组自交系(RIL)的八亲本MAGIC群体。亲本系是具有不同农艺和种子成分特征的遗传多样化优良品种,包括氨基酸和脂肪酸,以及油和蛋白质含量。本研究旨在引入大豆MAGIC(SoyMAGIC)群体,作为大豆农艺和种子品质性状基因型和表型研究的前所未有的平台。在2020年和2021年期间,通过重复田间试验对RIL进行了重要种子成分性状的评估。为了测量种子成分性状,采用了近红外反射率(NIR)技术。利用简化基因组测序(GBS)方法对RIL进行基因分型,以解析基因组并发现RIL之间的单核苷酸多态性(SNP)标记。通过包含复合区间作图(ICIM)构建了高密度连锁图谱。该连锁图谱长度为3770.75 cM,包含12007个SNP标记。第11号和18号染色体被记录为最短和最长的连锁群,长度分别为71.01 cM和341.15 cM。观察到所选性状的超亲分离以及全基因组较高的重组频率,证实了MAGIC群体在RIL中重新组合大豆基因组多样性的能力。单倍型块的评估表明,亲本基因组在RIL中分布不均,表明对某些亲本基因组存在隐性的抑制或促进影响。SoyMAGIC群体是一种重组遗传材料,通过开发和应用可靠的分子工具包,将加速进一步的基因组研究以及具有改良种子品质性状的大豆品种的培育。