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Near-Isogenic Lines of Japonica Rice Revealed New QTLs for Cold Tolerance at Booting Stage

机译:粳稻近等基因系在孕穗期揭示了新的耐冷QTL

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Low temperature stress severely hampers rice productivity, and hence elaborating chilling-mediated physiochemical alterations and unravelling cold tolerance pathways will facilitate cold resilient rice breeding. Various cold tolerant Near-isogenic lines (NILs) selected at the booting stage through backcrossing of a japonica landrace Lijing2 (cold tolerant) with cold sensitive Towada (a japonica cultivar). The cold tolerance attributes of NILs was validated over two years by evaluating the spikelet fertility followed by correlation of nineteen morphological traits with the rate of seed setting (RSS). Results revealed BG, FG, 1-2IL, RSLL, and UIL were significantly correlated with RSS and had nearer marker interval distance with cold tolerance in QTL analysis. Two QTLs, qCTB-7-a and qCTB-7-b , were found for RSS based on a mixed linear model. Alleles of two QTLs were contributed by Lijing2 and genetic distances between the peaks were 0.00 and 0.06cM, which explained 5.70% and 8.36% variation, respectively, One QTL for 1-2IL, RSLL, and ILBS, while two QTLs for FG, BG, and UIL were also identified. These findings can be exploited to engineer low temperature stress tolerant rice in times of climate change.
机译:低温胁迫严重阻碍了水稻的生产力,因此,精心设计的低温介导的理化变化和揭示耐寒性途径将促进水稻的耐寒性育种。在启动阶段通过将粳稻地方品种Lijing2(耐寒)与冷敏感的十和田(粳稻品种)回交来选择各种耐寒近等基因系(NILs)。通过评估小穗的繁殖力以及随后的19个形态性状与结实率(RSS)的相关性,验证了NIL的耐寒性属性在两年内得到了验证。结果显示,在QTL分析中,BG,FG,1-2IL,RSLL和UIL与RSS显着相关,并且标记间隔距离与耐寒性更接近。基于混合线性模型,为RSS找到了两个QTL,即qCTB-7-a和qCTB-7-b。 Lijing2贡献了两个QTL的等位基因,峰之间的遗传距离分别为0.00和0.06cM,这解释了5.70%和8.36%的变异,一个1-2IL,RSLL和ILBS的QTL,而两个FG,BG的QTL。 ,还确定了UIL。这些发现可用于在气候变化时期设计耐低温胁迫的水稻。

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