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首页> 外文期刊>Euphytica >Fine mapping of the quantitative trait locus qFLL9 controlling flag leaf length in rice
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Fine mapping of the quantitative trait locus qFLL9 controlling flag leaf length in rice

机译:水稻数量性状位点qFLL9控制旗叶长度的精细定位

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摘要

The morphological traits of leaves, such as size and shape, are major determinants of plant architecture and strongly affect high yield performance. To understand the molecular mechanism governing flag leaf length, we analyzed quantitative trait loci (QTLs) affecting flag leaf length by employing 176 F2 individuals derived from a cross between two japonica rice cultivars: Shennong265 (SN265) and Lijiangxintuanheigu (LTH). We identified qFLL3, qFLL6 and qFLL9 from this F2 population. Flag leaf length was increased by SN265 alleles at qFLL3 and qFLL6, but by LTH allele at qFLL9. In order to eliminate the influence of qFLL3 and qFLL6, one single residual heterozygous plant for qFLL9 region, RH-qFLL9, was selected based on the genotypes of 114 simple sequence repeat (SSR) markers and used as the parent of a segregating population. Using this segregating population of 889 plants, this region was narrowed down to an interval between RM24423 and RM24434. According to the rice annotation project database, there are 17 predicted genes in the 198-kb target region.
机译:叶片的形态特征(例如大小和形状)是决定植物结构的主要因素,并强烈影响高产性能。为了了解控制旗叶长度的分子机制,我们采用了来自两个粳稻品种神农265(SN265)和杂交粳稻的杂交后代的176 F 2 个体,分析了影响旗叶长度的数量性状基因座(QTL)。丽江新世界黑谷(LTH)。我们从该F 2 群体中鉴定了qFLL3,qFLL6和qFLL9。旗叶长度由qFLL3和qFLL6的SN265等位基因增加,但由qFLL9的LTH等位基因增加。为了消除qFLL3和qFLL6的影响,基于114个简单序列重复(SSR)标记的基因型选择了qFLL9区域的单个残留杂合植物RH-qFLL9,并将其用作分离种群的亲本。使用889种植物的隔离种群,该区域缩小到RM24423和RM24434之间的间隔。根据水稻注释项目数据库,在198-kb的目标区域中有17个预测基因。

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