首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Accumulation of additive effects generates a strong photoperiod sensitivity in the extremely late-heading rice cultivar 'Nona Bokra'
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Accumulation of additive effects generates a strong photoperiod sensitivity in the extremely late-heading rice cultivar 'Nona Bokra'

机译:加性效应的积累在极端抽穗的水稻品种'Nona Bokra'中产生了强烈的光周期敏感性

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摘要

Many rice cultivars that originated from lower-latitude regions exhibit a strong photoperiod sensitivity (PS) and show extremely late heading under long-day conditions. Under natural day-length conditions during the cropping season in Japan, the indica rice cultivar 'Nona Bokra' from India showed extremely late heading (202 days to heading) compared to the japonica cultivar 'Koshihikari' (105 days), from Japan. To elucidate the genetic factors associated with such extremely late heading, we performed quantitative trait locus (QTL) analyses of heading date using an F-2 population and seven advanced backcross progeny (one BC1F2 and six BC2F2) derived from a cross between 'Nona Bokra' and 'Koshihikari'. The analyses revealed 12 QTLs on seven chromosomes. The 'Nona Bokra' alleles of all QTLs contributed to an increase in heading date. Digenic interactions were rarely observed between QTLs. Based on the genetic parameters of the QTLs, such as additive effects and percentage of phenotypic variance explained, these 12 QTLs are likely generate a large proportion of the phenotypic variation observed in the heading dates between 'Nona Bokra' and 'Koshihikari'. Comparison of chromosomal locations between heading date QTLs detected in this study and QTLs previously identified in 'Nipponbare' 'Kasalath' populations revealed that eight of the heading date QTLs were recognized nearby the Hd1, Hd2, Hd3a, Hd4, Hd5, Hd6, Hd9, and Hd13. These results suggest that the strong PS in 'Nona Bokra' was generated mainly by the accumulation of additive effects of particular alleles at previously identified QTLs.
机译:许多来自低纬度地区的水稻品种表现出很强的光周期敏感性(PS),并且在长日照条件下抽穗期极其晚。与日本的粳稻品种“越光”(105天)相比,在日本农作物生长季节的自然日长条件下,印度the稻品种“ Nona Bokra”的抽穗非常晚(抽穗期为202天)。为了阐明与如此极端的抽穗期有关的遗传因素,我们使用F-2种群和七个衍生自'Nona Bokra之间杂交的回交后代(一个BC1F2和六个BC2F2)对抽穗期进行了数量性状基因座(QTL)分析”和“越光”。分析显示在七个染色体上有12个QTL。所有QTL的'Nona Bokra'等位基因导致了抽穗期的增加。 QTL之间很少观察到双基因相互作用。根据QTL的遗传参数,例如加性效应和表型变异百分比说明,这12个QTL可能产生了在“诺娜·博克拉”和“越光”之间的抽穗期观察到的大部分表型变异。在本研究中检测到的抽穗期QTL与先前在'Nipponbare''Kasalath'种群中鉴定的QTL之间的染色体位置比较表明,在Hd1,Hd2,Hd3a,Hd4,Hd5,Hd6,Hd9,和Hd13。这些结果表明,'Nona Bokra'中的强PS主要是由特定等位基因在先前鉴定的QTL处的累加效应积累而产生的。

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