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Analysis of High-Resolution QTL Markers Associated with Rice Yields Using Data for Two Consecutive Years in Different Environmental Conditions

机译:使用连续两年不同环境条件下的数据分析与水稻产量相关的高分辨率QTL标记

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Previously we reported the identification of seven quantitative trait loci (QTLs) associated with the rice yield measuring five parameters including panicles per plant (PPP), spikelets per panicle (SPP), seed set percentage (SSP), 1000-grain weight (TGW) and yield in 2012. Here we report the analysis of QTLs using the same trait parameters data of the mapping population in 2013 for detecting highly conserved QTL markers. A total of 6 QTLs were identified from chromosomes 1, 7, 8, 10, 11, and 12, which were contrasted with our previous results (chromosomes 1, 2, 4, 5, 6, 8, and 11). In this comparison, three QTLs from chromosome 1, 8, and 11 were only found to be associated with the components of yield over two consecutive years indicating high sensitivity of QTL markers to the environment. Of those three QTLs, SPP-associated marker RM12285 was found to be dominantly expressed by real-time PCR (qPCR). In addition, compared to our previous report the numbers of mapping population and markers were significantly increased for higher resolution markers from 70 to 120, and from 143 to 217, respectively. We also found that the parameter SPP was dominantly correlated with the rice yield. Furthermore, the double haploid (DH) population facilitated to analyze the epistatic effects for yield and yield components in rice. Taken together, combining multiple mapping population data over years possibly enables narrowing down to the highly conserved QTL markers against diverse environmental fluctuation caused by such as drought and high temperature. Thus, these data would be critically exploited to improve for the crop breeding strategy.
机译:以前,我们报道了与水稻产量相关的七个定量性状位点(QTL)的鉴定,其中五个参数包括每株穗数(PPP),每穗穗数(SPP),结实率(SSP),1000粒重(TGW)以及2012年的产量。在这里,我们报告使用2013年作图种群的相同性状参数数据对QTL进行分析,以检测高度保守的QTL标记。从染色体1、7、8、10、11和12中鉴定出总共6个QTL,这与我们先前的结果(1、2、4、5、6、8和11号染色体)形成对比。在此比较中,仅发现来自染色体1、8和11的三个QTL与连续两年的产量构成相关联,表明QTL标记对环境具有高度敏感性。在这三个QTL中,发现SPP相关标记RM12285通过实时PCR(qPCR)显性表达。此外,与我们以前的报告相比,高分辨率标记的作图种群和标记数量显着增加,分别从70增加到120,从143增加到217。我们还发现参数SPP与水稻产量显着相关。此外,双单倍体(DH)群体有助于分析水稻的产量和产量组成的上位效应。综上所述,结合多年的多个地图人口数据,可以缩小到高度保守的QTL标记,以应对干旱和高温等各种环境波动。因此,这些数据将被严格利用以改善作物育种策略。

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