首页> 美国卫生研究院文献>Journal of Experimental Botany >Fine mapping of a quantitative trait locus for spikelet number per panicle in a new plant type rice and evaluation of a near-isogenic line for grain productivity
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Fine mapping of a quantitative trait locus for spikelet number per panicle in a new plant type rice and evaluation of a near-isogenic line for grain productivity

机译:新型植物类型水稻中每穗小穗数的数量性状位点的精细作图和谷物产量的近等基因系的评估

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摘要

Total spikelet number per panicle (TSN) is one of the determinants of grain productivity in rice (Oryza sativa L.). In this study, we attempted to detect quantitative trait loci (QTLs) for TSN in the introgression lines with high TSN, derived from the cross of Indica Group variety IR 64 with new plant type lines. Two QTLs were detected on the long arm of chromosome 12: qTSN12.1 in the BC4F2 population of YTH63/IR 64 and qTSN12.2 in the BC4F3 population of YTH83/IR 64. TSN of the main tiller was significantly higher in near-isogenic lines (NILs) for qTSN12.1 (IR 64-NIL1; 188.6) and for qTSN12.2 (IR 64-NIL12; 199.4) than in IR 64 (141.2), owing to a significant increase in both primary and secondary branch numbers. These results suggest the critical function of these QTLs in the promotion of rachis branching at the panicle formation stage. Fine mapping of qTSN12.2 revealed six candidate genes in a 92-kb region of the Nipponbare reference genome sequence between flanking markers RM28746 and RM28753. Detailed phenotyping of agronomic traits of IR 64-NIL12 carrying qTSN12.2 showed drastic changes in plant architecture: this line had lower panicle number, longer culm, and longer and wider leaves compared with IR 64. Percentage of fertility and 1000-grain weight tended to be greater, and grain yield per square meter was also greater in IR 64-NIL12 than in IR 64. The newly identified QTLs will be useful for genetic improvement of the yield potential of Indica Group varieties. The markers tightly linked to qTSN12.2 are available for marker-assisted breeding.
机译:每穗总小穗数(TSN)是水稻(Oryza sativa L.)谷物生产力的决定因素之一。在这项研究中,我们试图检测高TSN渗入系中TSN的数量性状基因座(QTL),该系来自Indica Group品种IR 64与新植物类型系的杂交。在12号染色体的长臂上检测到两个QTL:YTH63 / IR 64的BC4F2种群中的qTSN12.1和YTH83 / IR 64的BC4F3种群中的qTSN12.2。 qTSN12.1(IR 64-NIL1; 188.6)和qTSN12.2(IR 64-NIL12; 199.4)的行数(NILs)比IR 64(141.2)中的行数大,这是因为主要分支分支数和次要分支数目均显着增加。这些结果表明这些QTLs在穗形成阶段促进Rachis分支中的关键功能。 qTSN12.2的精细定位揭示了侧翼标记RM28746和RM28753之间的Nipponbare参考基因组序列的92 kb区域中的六个候选基因。携带qTSN12.2的IR 64-NIL12农艺性状的详细表型显示植物结构发生了巨大变化:与IR 64相比,该品系具有更低的穗数,更长的茎秆和更长,更宽的叶片。生育率和1000粒重的趋势与IR 64相比,IR 64-NIL12中的每平方米谷物产量也更大。新鉴定的QTL对遗传改良印度of稻品种的产量潜力很有用。与qTSN12.2紧密相连的标记可用于标记辅助育种。

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