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Identification of QTLs and Validation of qCd-2 Associated with Grain Cadmium Concentrations in Rice

机译:稻米中镉含量与Qce的鉴定及 qCd-2 的验证

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Cadmium (Cd) is one of heavy metals harmful to human health. As rice is the main staple food in Asia and Cd is easily contaminated in rice, the molecular regulation of Cd accumulation should be explored. In this study, a recombinant inbred population derived from Xiang 743/Katy was grown in Cd-polluted fields and used to map the quantitative trait loci (QTLs) for Cd accumulation in rice grains. We identified seven QTLs distributed on chromosomes 2, 3, 6, 7, 8 and 10. These QTLs displayed phenotypic variances of 58.50% and 40.59% in 2014 and 2015, respectively. Two QTLs,qCd-2andqCd-7, were identified in both the two years.qCd-2was detected on the interval of RM250–RM207 on chromosome 2, with an LOD of 2.51 and a phenotypic contribution of 13.75% in 2014, and an LOD of 3.35 and a phenotypic contribution of 14.16% in 2015.qCd-7co-localized with the clonedqCdT7on chromosome 7 and may represent the correct candidate. The other five QTLs were detected only in one year. To further confirm the effects ofqCd-2, a residual heterozygous line designated as RHL945, with a heterozygous interval of RM263–RM207 on chromosome 2, was selected from the recombinant inbred population and used to develop an F2population consisting of 155 individual plants. By incorporating further simple sequence repeat markers into the segmental linkage map of the target region,qCd-2was delimited in the interval of RM5404–RM3774, with an LOD value of 4.38 and a phenotypic contribution of 15.52%. These results reflected the genetic regulation of grain Cd in rice and paved the way for the future cloning ofqCd-2.
机译:镉(Cd)是对人体健康有害的重金属之一。由于大米是亚洲的主要主食,而且镉很容易在大米中被污染,因此应探索镉积累的分子调控。在这项研究中,来自湘743 /凯蒂的重组近交种群生长在镉污染的田地中,并用于绘制水稻籽粒中镉积累的数量性状位点(QTL)。我们鉴定了分布在2号,3号,6号,7号,8号和10号染色体上的七个QTL。这些QTL在2014年和2015年分别表现出58.50%和40.59%的表型变异。两年中鉴定出两个QTL,分别为qCd-2和qCd-7.2014年,在2号染色体RM250-RM207的间隔中检测到qCd-2,LOD为2.51,表型贡献为13.75%,LOD为2015年,qCd-7的3.35位点和表型贡献率为14.16%。qCd-7与克隆的qCdT7共同位于7号染色体上,可能代表正确的候选位点。其他五个QTL仅在一年内被检测到。为了进一步证实qCd-2的作用,从重组近交种群中选择了一个杂合子系RHL945,其杂合子间隔为RM263-RM207在第2号染色体上,并被用于培养155个单株植物的F2群体。通过将其他简单的序列重复标记整合到目标区域的片段连锁图中,qCd-2的区间为RM5404–RM3774,LOD值为4.38,表型贡献为15.52%。这些结果反映了水稻中Cd的遗传调控,为将来克隆qCd-2铺平了道路。

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