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Genetic dissection of black grain rice by the development of a near isogenic line

机译:利用近等基因系开发黑粒稻的遗传解剖

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摘要

Rice (Oryza sativa L.) can produce black grains as well as white. In black rice, the pericarp of the grain accumulates anthocyanin, which has antioxidant activity and is beneficial to human health. We developed a black rice introgression line in the genetic background of Oryza sativa L. ‘Koshihikari’, which is a leading variety in Japan. We used Oryza sativa L. ‘Hong Xie Nuo’ as the donor parent and backcrossed with ‘Koshihikari’ four times, resulting in a near isogenic line (NIL) for black grains. A whole genome survey of the introgression line using DNA markers suggested that three regions, on chromosomes 1, 3 and 4 are associated with black pigmentation. The locus on chromosome 3 has not been identified previously. A mapping analysis with 546 F2 plants derived from a cross between the black rice NIL and ‘Koshihikari’ was evaluated. The results indicated that all three loci are essential for black pigmentation. We named these loci Kala1, Kala3 and Kala4. The black rice NIL was evaluated for eating quality and general agronomic traits. The eating quality was greatly superior to that of ‘Okunomurasaki’, an existing black rice variety. The isogenicity of the black rice NIL to ‘Koshihikari’ was very high.
机译:稻米(Oryza sativa L.)可以产生黑粒和白粒。在黑米中,谷物的果皮会积聚花青素,该花青素具有抗氧化活性,对人体健康有益。我们在日本领先的水稻品种“越光”的遗传背景下开发了黑稻基因渗入系。我们以水稻Oryza sativa L.“ Hong Xie Nuo”作为供体亲本,并与“ Koshihikari”回交了四次,形成了黑粒的近等基因系(NIL)。使用DNA标记对基因渗入系进行的全基因组调查表明,染色体1、3和4上的三个区域与黑色素沉着有关。染色体3上的基因座以前尚未鉴定。评价了来自黑米NIL和“越光”之间杂交的546种F2植物的作图分析。结果表明,所有三个基因座对于黑色素沉积都是必不可少的。我们将这些基因座命名为Kala1,Kala3和Kala4。对黑米NIL的食用品质和一般农艺性状进行了评估。食用质量大大优于现有黑米品种“ Okunomurasaki”。黑米NIL对“越光”的同质性很高。

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