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Validation of a quantitative trait locus for the white-core expression rate of grain on chromosome 6 in a brewing rice cultivar and development of DNA markers for marker-assisted selection

机译:验证染色体染色体的白核表达率的定量性状轨迹在酿造水稻品种和DNA标志物发育中的标记辅助选择

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Sake-brewing cultivars among varieties of Japanese rice (Oryza sativa L.) have traits adapted to the sake-brewing process, such as a high white-core expression rate (WCE). Our previous study detected putative quantitative trait loci (QTLs) associated with a high WCE derived from Yamadanishiki, a popular brewing rice cultivar. Because the occurrence of white-core grains depends on air temperature and the position of the grain on the panicle, phenotyping of WCE must consider these variable conditions. In this study, qWCE6, a QTL for the WCE on chromosome 6, was validated for the first time, and the phenotyping method examined for its suitability in fine-mapping. A clear tendency towards high WCE was observed in late-heading substituted lines which headed under low daily mean temperature at the experimental location. White-core grains were often expressed by the primary spikelets on the upper panicle, producing a high percentage of superior grains. The segregating population for qWCE6 in late heading revealed a distinct difference in WCE between the Koshihikari and Yamadanishiki homozygous alleles at qWCE6 as determined from that locality. Further, two insertion/ deletion markers were developed for the marker-assisted selection of qWCE6. Our results will be useful for informing the breeding of sake-brewing rice cultivars.
机译:日本大米(Oryza Sativa L.)各种品种的酿造品种具有适应性化酿造过程的特征,例如高白核表达率(WCE)。我们以前的研究检测到与来自Yamadanishiki的高WCE,一种受欢迎的酿造稻品种相关的推定定量特质基因座(QTL)。由于白芯晶粒的发生取决于空气温度和谷物对穗上的位置,因此WCE的表型必须考虑这些可变条件。在本研究中,QWCE6,染色体6上WCE的QTL首次验证,并检查了其在微图中的适用性的表型方法。在实验位置的低日平均温度下,在晚期取代的线路中观察到高WCE的明显倾向。白芯晶粒通常由上穗上的原发性尖峰表示,产生高百分比的上粒。 QWCE6的分离人口在晚期揭示了在QWCE6的Koshihikari和Yamadanishiki纯合等位基中的WCE在QWCE6中确定的差异。此外,开发了两个插入/删除标记用于标记辅助选择QWCE6。我们的结果对于通知酿造酿造水稻品种的繁殖是有用的。

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