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Uncovering of major genetic factors generating naturally occurring variation in heading date among Asian rice cultivars

机译:发现亚洲水稻品种中抽穗期自然发生变异的主要遗传因素

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摘要

To dissect the genetic factors controlling naturally occurring variation of heading date in Asian rice cultivars, we performed QTL analyses using F2 populations derived from crosses between a japonica cultivar, Koshihikari, and each of 12 cultivars originating from various regions in Asia. These 12 diverse cultivars varied in heading date under natural field conditions in Tsukuba, Japan. Transgressive segregation was observed in 10 F2 combinations. QTL analyses using multiple crosses revealed a comprehensive series of loci involved in natural variation in flowering time. One to four QTLs were detected in each cross combination, and some QTLs were shared among combinations. The chromosomal locations of these QTLs corresponded well with those detected in other studies. The allelic effects of the QTLs varied among the cross combinations. Sequence analysis of several previously cloned genes controlling heading date, including Hd1, Hd3a, Hd6, RFT1, and Ghd7, identified several functional polymorphisms, indicating that allelic variation at these loci probably contributes to variation in heading date. Taken together, the QTL and sequencing results indicate that a large portion of the phenotypic variation in heading date in Asian rice cultivars could be generated by combinations of different alleles (possibly both loss- and gain-of-function) of the QTLs detected in this study.Electronic supplementary materialThe online version of this article (doi:10.1007/s00122-010-1524-1) contains supplementary material, which is available to authorized users.
机译:为了剖析控制亚洲水稻品种抽穗期自然发生变化的遗传因素,我们使用F2群体进行了QTL分析,该群体来自粳稻品种越光和来自亚洲不同地区的12个品种之间的杂交。在日本筑波市,这12个不同的品种在自然田间条件下的抽穗期也不同。在10个F2组合中观察到过分的分离。使用多个杂交进行的QTL分析揭示了一系列与开花时间自然变化有关的基因座。每个交叉组合中检测到1-4个QTL,并且在组合之间共享一些QTL。这些QTL的染色体位置与其他研究中发现的位置非常吻合。 QTL的等位基因效应在交叉组合之间变化。几个以前克隆的控制抽穗期的基因的序列分析,包括Hd1,Hd3a,Hd6,RFT1和Ghd7,确定了几个功能多态性,表明这些位点的等位基因变异可能导致抽穗期的变异。综合起来,QTL和测序结果表明,亚洲水稻品种抽穗期表型的很大一部分变化可能是由在此检测到的QTL的不同等位基因(可能是功能丧失和功能获得)的组合产生的。电子补充材料本文的在线版本(doi:10.1007 / s00122-010-1524-1)包含补充材料,授权用户可以使用。

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