首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Mapping and characterization of seed dormancy QTLs using chromosome segment substitution lines in rice.
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Mapping and characterization of seed dormancy QTLs using chromosome segment substitution lines in rice.

机译:水稻中利用染色体片段替代系对种子休眠QTL的定位与表征。

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Seed dormancy - the temporary failure of a viable seed to germinate under favorable conditions - is a complex characteristic influenced by many genes and environmental factors. To detect the genetic factors associated with seed dormancy in rice, we conducted a QTL analysis using chromosome segment substitution lines (CSSLs) derived from a cross between Nona Bokra (strong dormancy) and Koshihikari (weak dormancy). Comparison of the levels of seed dormancy of the CSSLs and their recurrent parent Koshihikari revealed that two chromosomal regions - on the short arms of chromosomes 1 and 6 - were involved in the variation in seed dormancy. Further genetic analyses using an F2 population derived from crosses between the CSSLs and Koshihikari confirmed the allelic differences and the chromosomal locations of three putative QTLs: Sdr6 on chromosome 1 and Sdr9 and Sdr10 on chromosome 6. The Nona Bokra alleles of the three QTLs were associated with decreased germination rate. We discuss the physiological features of the CSSLs and speculate on the possible mechanisms of dormancy in light of the newly detected QTLs.
机译:种子休眠-可行种子在有利条件下发芽的暂时失败-是受许多基因和环境因素影响的复杂特征。为了检测与水稻种子休眠相关的遗传因素,我们使用染色体片段替代系(CSSLs)进行了QTL分析,该染色体片段替代系来自Nona Bokra(强休眠)和Koshihikari(弱休眠)之间的杂交。比较CSSLs和它们的轮回亲本Koshihikari的种子休眠水平,发现两个染色体区域(染色体1和6的短臂上)与种子休眠的变化有关。使用从CSSL和越光之间杂交获得的F 2 群体进一步的遗传分析证实了三个推定QTL的等位基因差异和染色体位置:1号染色体上的 Sdr6 和 > Sdr9 和 Sdr10 位于6号染色体上。三个QTL的Nona Bokra等位基因与发芽率降低相关。我们讨论了CSSL的生理特征,并根据新检测到的QTL推测了潜在的休眠机制。

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