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首页> 外文期刊>Czech Journal of Genetics and Plant Breeding >Quantitative trait loci conferring grain selenium nutrient in durum wheat × wild emmer wheat RIL population
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Quantitative trait loci conferring grain selenium nutrient in durum wheat × wild emmer wheat RIL population

机译:硬粒小麦×野生Emmer小麦RIL群体中赋予谷物硒养分的数量性状基因座

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The genetic and phenotypic basis of grain selenium concentration (GSeC) and yield per plant (GSeY) was studied in a tetraploid wheat population consisting of 152 F 6 recombinant inbred lines (RILs) derived from a cross between Triticum dicoccoides (accession G18-16) and durum wheat cultivar Langdon (LDN) grown under three different environments over 2 years. Wide genetic variation was found among RILs for GSeC and GSeY. A total of 15 QTL effects on 9 chromosomes associated with GSeC and GSeY were detected, with a logarithm od the odds?(LOD) score ranging from ca. 3.2 to 11.7, explaining 1.4% to 18.6% of the phenotypic variation. Higher GSeC and GSeY were conferred by the G18-16 allele at 10 loci and by the LDN allele at 5 loci. Seven QTLs showed interactions with environmental conditions. Five genomic regions harbouring QTLs for grain Se concentrations and yields were selected for further marker-assisted selection programs, facilitating the use of wild alleles for improvement of elite wheat cultivars.
机译:研究了四倍体小麦群体中的硒浓度(GSeC)和单株产量(GSeY)的遗传和表型基础,该群体由小麦(Triticum)杂交产生的152 F 6 重组自交系(RIL)组成dicoccoides(登录号G18-16)和硬质小麦品种Langdon(LDN)在3种不同环境下生长了2年。在GSeC和GSeY的RIL中发现了广泛的遗传变异。在与GSeC和GSeY相关的9条染色体上共检测到15个QTL效应,对数比值(LOD)的对数范围大约为。 3.2至11.7,解释了1.4%至18.6%的表型变异。较高的GSeC和GSeY由10个基因座处的G18-16等位基因和5个基因座处的LDN等位基因赋予。七个QTL显示与环境条件的相互作用。选择了具有籽粒硒浓度和产量QTL的五个基因组区域,以用于进一步的标记辅助选择程序,从而促进了利用野生等位基因改善优质小麦品种。

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