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Genetic Diversity and Population Structure of Maize Inbred Lines with Varying Levels of Resistance to Striga Hermonthica Using Agronomic Trait-Based and SNP Markers

机译:玉米自交系的遗传多样性和人口结构,使用农艺性状和SNP标记具有不同水平的抗血管抗性水平的抗性水平

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摘要

Striga hermonthica is a serious biotic stress limiting maize production in sub-Saharan Africa. The limited information on the patterns of genetic diversity among maize inbred lines derived from source germplasm with mixed genetic backgrounds limits the development of inbred lines, hybrids, and synthetics with durable resistance to S. hermonthica. This study was conducted to assess the level of genetic diversity in a panel of 150 diverse maize inbred lines using agronomic and molecular data and also to infer the population structure among the inbred lines. Ten Striga-resistance-related traits were used for the phenotypic characterization, and 16,735 high-quality single-nucleotide polymorphisms (SNPs), identified by genotyping-by-sequencing (GBS), were used for molecular diversity. The phenotypic and molecular hierarchical cluster analyses grouped the inbred lines into five clusters, respectively. However, the grouping patterns between the phenotypic and molecular hierarchical cluster analyses were inconsistent due to non-overlapping information between the phenotypic and molecular data. The correlation between the phenotypic and molecular diversity matrices was very low (0.001), which is in agreement with the inconsistencies observed between the clusters formed by the phenotypic and molecular diversity analyses. The joint phenotypic and genotypic diversity matrices grouped the inbred lines into three groups based on their reaction patterns to S. hermonthica, and this was able to exploit a broad estimate of the actual diversity among the inbred lines. The joint analysis shows an invaluable insight for measuring genetic diversity in the evaluated materials. The result indicates that wide genetic variability exists among the inbred lines and that the joint diversity analysis can be utilized to reliably assign the inbred lines into heterotic groups and also to enhance the level of resistance to Striga in new maize varieties.
机译:Striga Hermonthica是撒哈拉以南非洲的严重生物压力限制玉米产量。关于源自源种质的玉米自交系中遗传多样性模式的有限信息限制了近交系,杂种和合成的发展,具有耐用性耐受性的耐血栓。进行了本研究以评估使用农艺和分子数据的150个不同玉米自交系中的遗传多样性水平,也可以推断自交系中的人口结构。将十个抗抗抗抗血液抗性相关的性状用于表型表征,并且通过逐序列(GBS)鉴定的16,735个高质量的单核苷酸多态性(SNP)用于分子多样性。表型和分子等级聚类分析分别将自交系分别分为五个簇。然而,由于表型和分子数据之间的非重叠信息,表型和分子分层聚类分析之间的分组模式不一致。表型和分子分化基质之间的相关性非常低(0.001),这与由表型和分子多样性分析形成的簇之间观察到的不一致。联合表型和基因型多样性基质基于其反应模式将自交系分为三组,对S. Hermonthica,这能够利用广泛系中实际多样性的广泛估计。联合分析表明,用于测量评估材料中的遗传多样性的宝贵洞察力。结果表明,近交系中存在宽的遗传可变性,并且可以利用联合分集分析来可靠地将近交系分配到异质组中,也可以增强新玉米品种中抗趋势水平。

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