首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >A single recessive gene controls cadmium translocation in the cadmium hyperaccumulating rice cultivar Cho-Ko-Koku
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A single recessive gene controls cadmium translocation in the cadmium hyperaccumulating rice cultivar Cho-Ko-Koku

机译:单个隐性基因控制高积累镉水稻品种Cho-Ko-Koku中的镉转运

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The heavy metal cadmium (Cd) is highly toxic to humans and can enter food chains from contaminated crop fields. Understanding the molecular mechanisms of Cd accumulation in crop species will aid production of safe Cd-free food. Here, we identified a single recessive gene that allowed higher Cd translocation in rice, and also determined the chromosomal location of the gene. The Cd hyperaccumulator rice variety Cho-Ko-Koku showed 3.5-fold greater Cd translocation than the no-accumulating variety Akita 63 under hydroponics. Analysis of an F population derived from these cultivars gave a 1:3 segregation ratio for high:low Cd translocation. This indicates that a single recessive gene controls the high Cd translocation phenotype. A QTL analysis identified a single QTL, qCdT7, located on chromosome 7. On a Cd-contaminated field, Cd accumulation in the F population showed continuous variation with considerable transgression. Three QTLs for Cd accumulation were identified and the peak of the most effective QTL mapped to the same region as qCdT7. Our data indicate that Cd translocation mediated by the gene on qCdT7 plays an important role in Cd accumulation on contaminated soil.
机译:重金属镉(Cd)对人类有剧毒,可以从受污染的农田进入食物链。了解作物中Cd积累的分子机制将有助于生产安全的无Cd食品。在这里,我们确定了单个隐性基因,该基因允许水稻中Cd的转运更高,并且还确定了该基因的染色体位置。在水培条件下,Cd高蓄积水稻品种Cho-Ko-Koku的Cd转运比无积蓄秋田63高3.5倍。对这些品种衍生的F种群的分析表明,高Cd和低Cd易位的分离比率为1:3。这表明单个隐性基因控制高Cd易位表型。 QTL分析鉴定出位于7号染色体上的单个QTL qCdT7。在一个受Cd污染的田地中,F种群中Cd的积累表现出连续的变异,并具有相当大的侵害。确定了三个Cd积累的QTL,最有效的QTL的峰与qCdT7定位在同一区域。我们的数据表明,qCdT7基因介导的Cd易位在受污染土壤中Cd积累中起重要作用。

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