Genetic variability of maize (Zea mays) germplasm from Iran: genotyping with a maize 600K SNP array and genome-wide scanning for selection signatures

Sorour Arzhang, Reza Darvishzadeh, H. Alipour, Hamid Hatami Maleki, Sara Dezhsetan
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Abstract

Context Maize (Zea mays L.) is one of the most economically important plants of the cereal family; it has value as human food, livestock feed, and as a component of industrial products. Aims This study focused on genetic diversity and existence of genetic divergence among promising maize inbred lines in Iran. Methods A commercial maize 600K SNP (single-nucleotide polymorphism) array was used to inspect genetic variability among 93 maize inbred lines. Key results The rate of transition mutation was twice as high as transversion mutation, and the density of detected SNPs was greater close to telomere regions of maize chromosomes. Considering the fluctuation of observed, expected and total heterozygosity and fixation index values across maize chromosomes, as well as polymorphism information content values, there is a high level of genetic variability among the studied maize panel. In addition, discriminant analysis of the principal components revealed four subpopulations in which the subpopulation ‘Line’ was distinct from other subpopulations and had no genomic overlap with them. Selection signature analysis revealed 177 regions harbouring 75 genes that differentiate among subgroups. Detected genes had a role in the mitogen-activated protein kinase signalling pathway, spliceosome, protein processing in endoplasmic reticulum, and hormone signal transduction. Conclusions We conclude that remarkable genetic diversity and differentiation exists among the studied maize subpopulations. The most differentiated SNPs among the subpopulations were associated with important biological processing genes and pathways. Implications The findings provide valuable insights for future maize breeding programs through exploitation of heterosis, as well as marker-assisted selection.
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伊朗玉米(Zea mays)种质的遗传变异性:利用玉米 600K SNP 阵列进行基因分型和全基因组选择特征扫描
背景 玉米(Zea mays L.)是谷物家族中最具经济价值的植物之一;它具有作为人类食物、牲畜饲料和工业产品成分的价值。本研究的重点是伊朗有潜力的玉米近交系的遗传多样性和存在的遗传差异。方法 使用商用玉米 600K SNP(单核苷酸多态性)阵列检测 93 个玉米近交系的遗传变异性。主要结果 过渡突变率是反转突变率的两倍,在玉米染色体端粒区附近检测到的 SNPs 密度更大。考虑到玉米染色体上的观察杂合度、预期杂合度、总杂合度和固定指数值以及多态性信息含量值的波动,所研究的玉米群体存在较高的遗传变异性。此外,主成分的判别分析还发现了四个亚群,其中 "线 "亚群与其他亚群不同,没有基因组重叠。选择特征分析揭示了 177 个区域,其中包含 75 个区分亚群的基因。检测到的基因在丝裂原活化蛋白激酶信号通路、剪接体、内质网蛋白质加工和激素信号转导中发挥作用。结论 我们得出结论,所研究的玉米亚群之间存在显著的遗传多样性和分化。亚群中分化最大的 SNP 与重要的生物加工基因和途径有关。意义 这些研究结果为未来玉米育种计划提供了宝贵的启示,有助于利用异质性和标记辅助选择。
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