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Mating Design and Genetic Structure of a Multi-Parent Advanced Generation Intercross (MAGIC) Population of Sorghum (Sorghum bicolor (L.) Moench)

机译:高粱(高粱)的多亲本代杂交(MAGIC)群体的交配设计和遗传结构。

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摘要

Multi-parent advanced generation intercross (MAGIC) populations are powerful next-generation mapping resources. We describe here the mating design and structure of the first MAGIC population in sorghum, and test its utility for mapping. The population was developed by intercrossing 19 diverse founder lines through a series of paired crosses with a genetic male sterile (MS) source, followed by 10 generations of random mating. At the final stage of random mating, 1000 random fertile plants in the population were identified and subjected to six generations of selfing to produce 1000 immortal MAGIC inbred lines. The development of this sorghum MAGIC population took over 15 yr. Genotyping-by-sequencing (GBS) of a subset of 200 MAGIC lines identified 79,728 SNPs, spanning high gene-rich regions. Proportion of SNPs per chromosome ranged from 6 to 15%. Structure analyses produced no evidence of population stratification, portraying the desirability of this population for genome-wide association studies (GWAS). The 19 founders formed three clusters, each with considerable genetic diversity. Further analysis showed that 73% of founder alleles segregated in the MAGIC population. Linkage disequilibrium (LD) patterns depicted the MAGIC population to be highly recombined, with LD decaying to r2  ≤  0.2 at 40 kb and down to r2  ≤  0.1 at 220 kb. GWAS detected two known plant height genes, DWARF1 (chromosome 9) and DWARF3 (chromosome 7), and a potentially new plant height quantitative trait locus (QTL) (QTL-6) on chromosome 6. The MAGIC population was found to be rich in allelic content with high fragmentation of its genome, making it fit for both gene mapping and effective marker-assisted breeding.
机译:多亲高级交叉代(MAGIC)种群是强大的下一代制图资源。我们在这里描述高粱中第一个MAGIC种群的交配设计和结构,并测试其在作图中的效用。通过与遗传雄性不育(MS)来源进行一系列成对杂交,将19个不同的创始人群体杂交,然后进行10代随机交配,从而形成了种群。在随机交配的最后阶段,鉴定出种群中的1000只可育植物,并进行了六代自交,以产生1000株不朽的MAGIC自交系。高粱MAGIC种群的发展历时15年。 200条MAGIC品系的子集的测序基因分型(GBS)识别了79,728个SNP,跨越了高基因丰富区域。每条染色体SNP的比例为6%至15%。结构分析未发现种群分层的证据,表明该种群适合进行全基因组关联研究(GWAS)。 19位创始人组成了三个集群,每个集群都有相当大的遗传多样性。进一步的分析表明,在MAGIC人群中73%的奠基者等位基因是隔离的。连锁不平衡(LD)模式显示MAGIC群体高度重组,LD在40 kb时衰减至r 2 ≤0.2,而在220 kb时下降至r 2 ≤0.1 。 GWAS检测到两个已知的植物高度基因DWARF1(9号染色体)和DWARF3(7号染色体),以及6号染色体上潜在的新植物高度定量性状基因座(QTL)(QTL-6)。发现MAGIC种群富含等位基因含量高的基因组片段,使其既适合基因作图又能进行有效的标记辅助育种。

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