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QTL mapping for grain filling rate and yield-related traits in RILs of the Chinese winter wheat population Heshangmai × Yu8679

机译:中国冬小麦种群上商×育8679的RILs籽粒灌浆率和产量相关性状的QTL定位

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A set of 142 winter wheat recombinant inbred lines (RILs) deriving from the cross Heshangmai × Yu8679 were tried in four ecological environments during the seasons 2006 and 2007. Nine agronomic traits comprising mean grain filling rate (GFRmean), maximum grain filling rate (GFRmax), grain filling duration (GFD), grain number per ear (GNE), grain weight per ear (GWE), flowering time (FT), maturation time (MT), plant height (PHT) and thousand grain weight (TGW) were evaluated in Beijing (2006 and 2007), Chengdu (2007) and Hefei (2007). A genetic map comprising 173 SSR markers and two EST markers was generated. Based on the genetic map and phenotypic data, quantitative trait loci (QTL) were mapped for these agronomic traits. A total of 99 putative QTLs were identified for the nine traits over four environments except GFD, PHT and MT, measured in two environments (BJ07 and CD07), respectively. Of the QTL detected, 17 for GFRmean, 16 for GFRmax, 21 for TGW and 10 for GWE involving the chromosomes 1A, 1B, 2A, 2D, 3A, 3B, 3D, 4A, 4D, 5A, 5B, 6D and 7D were identified. Moreover, 13 genomic regions showing pleiotropic effects were detected in chromosomes 1A, 1B, 1D, 2A, 2B, 2D, 3A, 3B, 4B, 4D, 5B, 6D and 7D; these QTL revealing pleiotropic effects may be informative for a better understanding of the genetic basis of grain filling rate and other yield-related traits, and represent potential targets for multi-trait marker aided selection in wheat.
机译:在2006年和2007年的四个生态环境中,尝试了一组142个来自Heshangmai×Yu8679杂交的冬小麦重组自交系(RIL)。9个农艺性状包括平均籽粒灌浆率(GFR mean ),最大籽粒填充率(GFR max ),籽粒填充持续时间(GFD),每只穗粒数(GNE),每只穗粒重(GWE),开花时间(FT),成熟时间(分别在北京(2006年和2007年),成都(2007年)和合肥(2007年)评估了植株的MT,株高(PHT)和千粒重(TGW)。生成了包含173个SSR标记和两个EST标记的遗传图谱。基于遗传图谱和表型数据,为这些农艺性状定位了数量性状基因座(QTL)。分别在两个环境(BJ07和CD07)中对GFD,PHT和MT以外的四个环境中的9个性状共鉴定出99个QTL。在检测到的QTL中,涉及染色体1A,1B,2A,2D,3A,3B的QTL中,GFR mean 为17,GFR max 为16,TGW为21,GWE为10。确定了3D,4A,4D,5A,5B,6D和7D。此外,在1A,1B,1D,2A,2B,2D,3A,3B,4B,4D,5B,6D和7D染色体中检测到13个显示多效性的基因组区域。这些揭示多效性的QTL可能有助于更好地了解籽粒灌浆率和其他与产量相关的性状的遗传基础,并代表小麦多性状标记辅助选择的潜在目标。

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