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Mapping Grain Iron and Zinc Content Quantitative Trait Loci in an Iniadi-Derived Immortal Population of Pearl Millet

机译:绘制源自稻米的成虫的不朽种群中的谷物铁和锌含量定量性状位点

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Pearl millet is a climate-resilient nutritious crop requiring low inputs and is capable of giving economic returns in marginal agro-ecologies. In this study, we report large-effect iron (Fe) and zinc (Zn) content quantitative trait loci ( QTLs) using diversity array technology (DArT) and simple sequence repeats (SSRs) markers to generate a genetic linkage map using 317 recombinant inbred line (RIL) population derived from the (ICMS 8511-S1-17-2-1-1-B-P03 × AIMP 92901-S1-183-2-2-B-08) cross. The base map [seven linkage groups (LGs)] of 196 loci was 964.2 cM in length (Haldane). AIMP 92901-S1-183-2-2-B-08 is an Iniadi line with high grain Fe and Zn, tracing its origin to the Togolese Republic, West Africa. The content of grain Fe in the RIL population ranged between 20 and 131 ppm (parts per million), and that of Zn from 18 to 110 ppm. QTL analysis revealed a large number of QTLs for high grain iron (Fe) and zinc (Zn) content. A total of 19 QTLs for Fe and Zn were detected, of which 11 were for Fe and eight were for Zn. The portion of the observed phenotypic variance explained by different QTLs for grain Fe and Zn content varied from 9.0 to 31.9% (cumulative 74%) and from 9.4 to 30.4% (cumulative 65%), respectively. Three large-effect QTLs for both minerals were co-mapped in this population, one on LG1 and two on LG7. The favorable QTL alleles of both mineral micronutrients were contributed by the male parent (AIMP 92901-deriv-08). Three putative epistasis interactions were observed for Fe content, while a single digenic interaction was found for Zn content. The reported QTLs may be useful in marker-assisted selection (MAS) programs, in genomic selection (GS) breeding pipelines for seed and restorer parents, and in population improvement programs for pearl millet.
机译:珍珠粟是一种气候适应力强的营养作物,需要少量投入,并能够在边际农业生态中获得经济回报。在这项研究中,我们报告了使用多样性阵列技术(DArT)和简单序列重复(SSRs)标记通过使用317个重组自交系生成遗传连锁图谱的大铁(Fe)和锌(Zn)含量定量特征位点(QTL) (ICMS 8511-S1-17-2-1-1-B-P03×AIMP 92901-S1-183-2-2-B-08)交叉衍生的品系(RIL)种群。 196个基因座的基础图谱(七个连锁组(LGs))的长度为964.2 cM(Haldane)。 AIMP 92901-S1-183-2-2-B-08是一条Iniadi品系,其中含有大量的铁和锌,其起源可追溯到西非多哥共和国。 RIL群体中的铁含量为20至131 ppm(百万分之几),而锌的含量为18至110 ppm。 QTL分析显示,大量的QTL用于高铁(Fe)和锌(Zn)含量。总共检测到19个铁和锌的QTL,其中11个用于Fe,八个QTL。观察到的表型差异部分由不同的QTL解释,其中铁和锌的含量分别为9.0%至31.9%(累计74%)和9.4%至30.4%(累计65%)。在这群人中,针对这两种矿物的三个大型QTL被共同映射,一个在LG1上,两个在LG7上。两种矿物质微量营养素的有利QTL等位基因由男性亲本贡献(AIMP 92901-deriv-08)。观察到三个假定的上位相互作用的铁含量,而发现一个单一的双基因相互作用的锌含量。报告的QTL在标记辅助选择(MAS)计划,种子和恢复亲本的基因组选择(GS)育种管道以及珍珠粟的种群改良计划中可能有用。

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