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Mapping QTLs for mineral element contents in brown and milled rice using an Oryza sativa × O. rufipogon backcross inbred line population

机译:利用Oryza sativa×O. rufipogon回交自交系群体定位糙米和精米中矿质元素含量的QTLs。

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摘要

Biofortifying food crops with essential minerals would help to alleviate mineral deficiencies in humans. Detection of quantitative trait loci (QTLs) for mineral nutrient contents in rice was conducted using backcross inbred lines derived from an interspecific cross of Oryza sativa × O. rufipogon. The population was grown in Hangzhou and Lingshui, with the contents of Mg, Zn, Fe, Mn, Cu and Se in brown rice measured in both trials and that in milled rice tested in Hangzhou only. A total of 24 QTLs for mineral element contents were identified, including two for both the brown and milled rice, 17 for brown rice only, and five for milled rice only. All the seven QTLs detected for the mineral contents in milled rice and 13 of the 19 QTLs for the contents in brown rice had the enhancing alleles derived from O. rufipogon. Fifteen QTLs were clustered in seven chromosomal regions, indicating that common genetic-physiological mechanisms were involved for different mineral nutrients and the beneficial alleles could be utilized to improve grain nutritional quality by markerassisted selection.ud
机译:用必需矿物质对粮食作物进行生物强化将有助于减轻人类的矿物质缺乏。水稻中矿质营养成分含量的定量性状位点(QTL)的检测是利用回交自交系获得的,该回交自交系来源于稻(Oryza sativa)×芸香豆(O. rufipogon)的种间杂交。该种群生长在杭州和陵水,两次试验中均测得糙米中的Mg,Zn,Fe,Mn,Cu和Se含量,而杭州试验中仅测得碾米中的Mg,Zn,Fe,Mn,Cu和Se含量。总共鉴定了24个矿物元素含量的QTL,包括两个糙米和碾米的QTL,仅17个糙米和五个仅米的QTL。在碾米中检测到的七个矿物质含量的QTL和在糙米中含量的19个QTL中的13个都具有源自芸苔科植物的增强等位基因。 15个QTL聚集在7个染色体区域,表明不同矿物质营养素涉及共同的遗传-生理机制,而有利的等位基因可通过标记辅助选择而用于改善谷物的营养品质。

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