首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Targeted mapping of Cdu1, a major locus regulating grain cadmium concentration in durum wheat (Triticum turgidum L. var durum).
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Targeted mapping of Cdu1, a major locus regulating grain cadmium concentration in durum wheat (Triticum turgidum L. var durum).

机译:有针对性地定位 Cdu1 ,这是调节硬粒小麦( Triticum turgidum L. var durum )中籽粒镉浓度的主要位点。

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Some durum wheat (Triticum turgidum L. var durum) cultivars have the genetic propensity to accumulate cadmium (Cd) in the grain. A major gene controlling grain Cd concentration designated as Cdu1 has been reported on 5B, but the genetic factor(s) conferring the low Cd phenotype are currently unknown. The objectives of this study were to saturate the chromosomal region harboring Cdu1 with newly developed PCR-based markers and to investigate the colinearity of this wheat chromosomal region with rice (Oryza sativa L.) and Brachypodium distachyon genomes. Genetic mapping of markers linked to Cdu1 in a population of recombinant inbred substitution lines revealed that the gene(s) associated with variation in Cd concentration resides in wheat bin 5BL9 between fraction breakpoints 0.76 and 0.79. Genetic mapping and quantitative trait locus (QTL) analysis of grain Cd concentration was performed in 155 doubled haploid lines from the cross W9262-260D3 (low Cd) by Kofa (high Cd) revealed two expressed sequence tag markers (ESMs) and one sequence tagged site (STS) marker that co-segregated with Cdu1 and explained >80% of the phenotypic variation in grain Cd concentration. A second, minor QTL for grain Cd concentration was also identified on 5B, 67 cM proximal to Cdu1. The Cdu1 interval spans 286 kbp of rice chromosome 3 and 282 kbp of Brachypodium chromosome 1. The markers and rice and Brachypodium colinearity described here represent tools that will assist in the positional cloning of Cdu1 and can be used to select for low Cd accumulation in durum wheat breeding programs targeting this trait. The isolation of Cdu1 will further our knowledge of Cd accumulation in cereals as well as metal accumulation in general.
机译:某些硬质小麦(i> um turgidum L.var durum )品种具有在籽粒中积累镉(Cd)的遗传倾向。在5B上已经报道了一个主要的控制籽粒Cd浓度的基因,称为 Cdu1 ,但是目前尚不清楚赋予低Cd表型的遗传因素。这项研究的目的是用新开发的基于PCR的标记物将包含 Cdu1 的染色体区域饱和,并研究该小麦染色体区域与水稻( L )和 Brachypodium distachyon 基因组。重组近交自交系中与 Cdu1 连锁的标记的遗传图谱显示,与Cd浓度变化相关的基因位于小麦断点5BL9的断点0.76和0.79之间。利用Kofa(高Cd)在来自W9262-260D3(低Cd)的交叉W9262-260D3(低Cd)的155个双倍单倍体系中进行了谷物Cd浓度的遗传作图和定量性状位点(QTL)分析,发现了两个表达的序列标签标记(ESM)和一个序列被标记位点(STS)标记与 Cdu1 共聚并解释了谷物Cd浓度表型变异的> 80%。在 Cdu1 的近端67 cM的5B处,还确定了第二个次要的Qd,用于确定谷物中Cd的浓度。 Cdu1 区间跨越水稻3号染色体的286 kbp和 Brachypodium 染色体1的282 kbp。这里描述的标记和水稻与 Brachypodium 的线性关系是工具这将有助于 Cdu1 的位置克隆,并可用于在针对该性状的硬质小麦育种计划中选择低镉​​积累。 Cdu1 的分离将使我们进一步了解谷物中Cd的积累以及一般金属的积累。

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