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首页> 外文期刊>BMC Genetics >Genetic diversity among early provitamin A quality protein maize inbred lines and the performance of derived hybrids under contrasting nitrogen environments
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Genetic diversity among early provitamin A quality protein maize inbred lines and the performance of derived hybrids under contrasting nitrogen environments

机译:早期育种中遗传多样性含有质量蛋白质玉米近交系和衍生杂种在对比氮环境下的性能

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Information on population structure and genetic diversity of germplasm in a breeding programme is useful because it enhances judicious utilisation of genetic resources to achieve breeding objectives. Seventy early maturing provitamin A (PVA) quality protein maize (QPM) inbreds developed by the IITA- maize improvement programme were genotyped using 8171 DArTseq markers. Furthermore, 96 hybrids derived from 24 selected inbreds plus four checks were evaluated under low-N and optimal environments in Nigeria during 2016 and 2017. Genotypic and phenotypic data of inbreds and hybrids respectively, were analysed to (i) assess the level of genetic dissimilarities and population structure of the inbreds, and (ii) investigate the grain yield performance of derived hybrids under low-N, optimal and across environments. Genetic diversity among the seventy inbreds was high varying from 0.042 to 0.500 with an average of 0.357. Sixty-six inbred lines with probabilities ≥0.70 were assigned to a single group. The population structure analysis, the UPGMA phylogeny, and the principal Coordinate Analysis (PCoA) of the DArTseq markers revealed a clear separation of five groups and each followed pedigree records. Clustered inbreds displayed common characteristics including high PVA levels, and drought and low-N tolerance. The top performing hybrid, TZEIORQ 40?×?TZEIORQ 26 out-yielded the best hybrid control, TZEIOR 127?×?TZEIOR 57 by 8, 3, and 9% under low-N, optimal, and across environments, respectively. High repeatability estimates were detected for grain yield under each and across environments. Similarly, high breeding efficiency of 71, 70 and 72% were computed under low-N, optimal, and across environments, respectively. The UPGMA clustering, the structure analysis, and the PCoA consistently revealed five groups which largely followed pedigree information indicating the existence of genetically distinct groups in the inbred lines. High repeatability and breeding efficiency values estimated for grain yield of hybrids under low-N, optimal and across environments demonstrated that high productive hybrids could be developed using inbreds from the opposing clusters identified by the DArTseq markers. The 15 top performing hybrids identified, particularly TZEIORQ 40?×?TZEIORQ 26 and TZEIORQ 29?×?TZEIORQ 43 should be further evaluated for release and commercialization in SSA.
机译:育种计划中种质人口结构和遗传多样性的信息是有用的,因为它提高了遗传资源的明智利用,实现了育种目标。七十早期成熟的野生素A(PVA)质量蛋白质玉米(QPM)由IITA - 玉米改善计划开发的近交,使用8171 dartseq标记进行基因分型。此外,在2016年和2017年期间,在尼日利亚的低N和最佳环境下评估了来自24种选择的近亲加上四种检查的96个杂种。分别分析了近额和杂种的基因型和表型数据,评估了遗传异化水平和近交的人口结构和(ii)研究了低N,最佳和环境下衍生杂种的籽粒产量表现。七十累积中的遗传多样性从0.042到0.500的高度变化,平均为0.357。六十六条具有概率≥0.70的自交系被分配给单个组。群体结构分析,UPGMA系统发育和Dartseq标记的主要坐标分析(PCOA)揭示了五组的清晰分离,每次均匀的血统记录。聚集的近额显示常见的特征,包括高PVA水平,以及干旱和低N容差。表演混合,Teeiorq 40?×teiorq 26分别出现了最佳的混合控制,Teior 127?×β〜α×θ×β〜3分别在Low-N,最佳和跨环境下的9%。在每个和跨环境下检测到高重复性估计。类似地,在低N,最佳和跨环境下计算出71,70和72%的高育种效率。 UPGMA聚类,结构分析和PCOA始终揭示了五组,其主要是血统信息,表明近交系中的基因不同群体存在。低N,最佳和跨环境下的杂种颗粒产量估计的高可重复性和育种效率值证明了高生产率的杂种可以使用来自Dartseq标记标记的相对簇的血统来开发。应进一步评估SSA中的释放和商业化的15个表演混合动力,特别是TeeiorQ 40?×××α×××××β×××××κ330。

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