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Identification of rice chromosome segment substitution line Z322-1-10 and mapping QTLs for agronomic traits from the F3 population

机译:F 3 群体水稻染色体片段代换系Z322-1-10的鉴定及农艺性状的QTL定位

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摘要

Chromosome segment substitution lines (CSSLs) are powerful tools to combine naturally occurring genetic variants with favorable alleles in the same genetic backgrounds of elite cultivars. An elite CSSL Z322-1-10 was identified from advanced backcrosses between a japonica cultivar Nipponbare and an elite indica restorer Xihui 18 by SSR marker-assisted selection (MAS). The Z322-1-10 line carries five substitution segments distributed on chromosomes 1, 2, 5, 6 and 10 with an average length of 4.80 Mb. Spikilets per panicle, 1000-grain weight, grain length in the Z322-1-10 line are significantly higher than those in Nipponbare. Quantitative trait loci (QTLs) were identified and mapped for nine agronomic traits in an F3 population derived from the cross between Nipponbare and Z322-1-10 using the restricted maximum likelihood (REML) method in the HPMIXED procedure of SAS. We detected 13 QTLs whose effect ranging from 2.45% to 44.17% in terms of phenotypic variance explained. Of the 13 loci detected, three are major QTL (qGL1, qGW5-1 and qRLW5-1) and they explain 34.68%, 44.17% and 33.05% of the phenotypic variance. The qGL1 locus controls grain length with a typical Mendelian dominance inheritance of 3:1 ratio for long grain to short grain. The already cloned QTL qGW5-1 is linked with a minor QTL for grain width qGW5-2 (13.01%) in the same substitution segment. Similarly, the previously reported qRLW5-1 is also linked with a minor QTL qRLW5-2. Not only the study is important for fine mapping and cloning of the gene qGL1, but also has a great potential for molecular breeding.
机译:染色体区段替换系(CSSL)是强大的工具,可将自然发生的遗传变异与优良品种的相同遗传背景中的有利等位基因结合在一起。通过SSR标记辅助选择(MAS),从粳稻新品种Nipponbare和优良in稻恢复系Xihui 18之间的高级回交中鉴定出优良CSSL Z322-1-10。 Z322-1-10品系带有分布在1、2、5、6和10号染色体上的5个置换片段,平均长度为4.80 Mb。 Z322-1-10品系的每穗小穗重1000粒,籽粒长度显着高于日本晴。在SAS的HPMIXED程序中,使用限制性最大似然(REML)方法,鉴定了定量性状基因座(QTL),并针对从Nipponbare和Z322-1-10之间的杂交获得的F3群体中的9个农艺性状进行了定位。我们检测了13个QTL,这些QTL的影响在表型变异方面从2.45%到44.17%不等。在检测到的13个基因座中,有3个是主要的QTL(qGL1,qGW5-1和qRLW5-1),它们解释了表型变异的34.68%,44.17%和33.05%。对于长粒与短粒,qGL1基因座以3:1的典型孟德尔优势遗传控制着粒长。已克隆的QTL qGW5-1与同一替换段中的晶粒宽度qGW5-2(13.01%)的次要QTL链接。同样,先前报告的qRLW5-1也与次要QTL qRLW5-2链接。这项研究不仅对qGL1基因的精细定位和克隆非常重要,而且在分子育种方面也具有很大的潜力。

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