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Genetic dissection of pre-harvest sprouting resistance in an upland rice cultivar

机译:旱稻品种收获前发芽抗性的遗传解剖

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Seed dormancy is important in rice breeding because it confers resistance to pre-harvest sprouting (PHS). To detect quantitative trait loci (QTLs) for pre-harvest sprouting resistance, we used chromosome segment substitution lines (CSSLs) derived from a cross between the Japanese upland rice cultivar ‘Owarihatamochi’ and the lowland rice cultivar ‘Koshihikari’. In the CSSLs, several chromosomal regions were associated with PHS resistance. Among these, the chromosome 9 segment from ‘Owarihatamochi’ had the greatest association with increased PHS resistance. Further QTL analysis using an advanced backcross population (BC4F2) derived from a ‘Koshihikari’ × ‘Owarihatamochi’ cross revealed two putative QTLs, here designated qSDR9.1 ( Seed dormancy 9.1 ) and qSDR9.2 , on chromosome 9. The ‘Owarihatamochi’ alleles of the two QTLs reduced germination. Further fine mapping revealed that qSDR9.1 and qSDR9.2 were located within 4.1-Mb and 2.3-Mb intervals (based on the ‘Nipponbare’ reference genome sequence) defined by the simple sequence repeat marker loci RM24039 and RM24260 and Indel_2 and RM24540 , respectively. We thus identified two QTLs for PHS resistance in ‘Owarihatamochi’, even though resistance levels are relatively low in this cultivar. This unexpected finding suggests the advantages of using CSSLs for QTL detection.
机译:种子休眠在水稻育种中很重要,因为它赋予了对收获前发芽的抵抗力。为了检测定量性状基因座(QTL)的收获前发芽抗性,我们使用了源自日本陆地水稻品种“ Owarihatamochi”和低陆水稻品种“ Koshihikari”之间杂交的染色体片段替代系(CSSLs)。在CSSL中,几个染色体区域与PHS抗性相关。其中,“ Owarihatamochi”的9号染色体片段与PHS耐药性增加之间的关联最大。使用源自'Koshihikari'×'Owarihatamochi'杂交的先进回交群体(BC 4 F 2 )进行的进一步QTL分析揭示了两个推定的QTL,在此称为qSDR9.1( 9号染色体上的种子休眠9.1)和qSDR9.2。两个QTL的'Owarihatamochi'等位基因减少了发芽。进一步的精细作图表明,qSDR9.1和qSDR9.2位于简单序列重复标记基因座RM24039和RM24260以及Indel_2和RM24540所定义的4.1-Mb和2.3-Mb区间内(基于'Nipponbare'参考基因组序列),分别。因此,我们确定了'Owarihatamochi'中PHS抗性的两个QTL,尽管该品种的抗性水平相对较低。这一出乎意料的发现表明使用CSSL进行QTL检测的优势。

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