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首页> 外文期刊>Theoretical and Applied Genetics >Identification of a major QTL for silique length and seed weight in oilseed rape (Brassica napus L.)
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Identification of a major QTL for silique length and seed weight in oilseed rape (Brassica napus L.)

机译:确定油菜油菜长角果和种子重的主要QTL

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Silique length (SL) and seed weight (SW) are two important yield-related traits controlled by quantitative trait loci (QTL) in oilseed rape (Brassica napus L.). The genetic bases underlying these two traits are largely unknown at present. In this study, we conducted QTL analyses for SL and SW using 186 recombinant inbred lines (RILs) derived from a cross between S1, an EMS mutant with extremely long siliques and large seeds, and S2, an inbred line with regular silique length and seed size. RILs were grown in Wuhan in the 2008/09 (SS09) and 2009/10 (SS10) growing seasons, and mean SL and SW for each line were investigated. Ten non-redundant QTL were identified for SL. Of these, a major QTL, cqSLA9, consistently explained as much as 53.4% of SL variation across environments. The others are minor QTL and individually explained less than 10% of the SL variation. Nine non-redundant QTL were identified for SW. Of which, one major QTL, cqSWA9, explained as much as 28.2% of the total SW variation in the SS09 and SS10 environments. In addition, three additive by additive interactions with small effects were detected for SL, and no interactions were detected for SW. Interestingly, the two major QTL, cqSLA9 for SL and cqSWA9 for SW colocalized in the same chromosomal region and were integrated into a unique QTL, uqA9. The S1 allele at this locus increases both SL and SW, suggesting that uqA9 has pleiotropic effects on both SL and SW. The existence and effect of uqA9 was confirmed in genetically different RILs derived from the cross between S1 and No2127, a resynthesized DH line having regular silique length and seed size. Individuals in one residual heterozygous line for cqSLA9 showed significant difference in silique length. The results in this study revealed that silique length in the S1 mutant is mainly controlled by the cqSLA9 locus, which will be suitable for fine mapping and marker-assisted selection in rapeseed breeding for high yield.
机译:角果长度(SL)和种子重量(SW)是油菜(甘蓝型油菜)中数量性状基因座(QTL)控制的两个重要的产量相关性状。目前,这两个特征的遗传基础尚不清楚。在这项研究中,我们使用186个重组自交系(RIL)进行了SL和SW的QTL分析,这些自交系来自S1,这是一个具有长长角果和大种子的EMS突变体,而S2是一个具有规则长角果和种子的自交系尺寸。 RILs在2008/09(SS09)和2009/10(SS10)生长季节在武汉生长,并调查了每个品系的平均SL和SW。确定了SL的十个非冗余QTL。其中,主要的QTL cqSLA9始终解释了整个环境中SL变异的高达53.4%。其他的则是次要的QTL,单独解释为SL变异的不到10%。为SW确定了9个非冗余QTL。其中一个主要的QTL cqSWA9解释了SS09和SS10环境中总SW变化的28.2%。另外,对于SL,检测到三种具有附加作用的添加剂相互作用,而对于SW则未检测到相互作用。有趣的是,两个主要的QTL(SL的cqSLA9和SW的cqSWA9)共定位在同一染色体区域,并整合到一个独特的QTL uqA9中。该位点的S1等位基因增加了SL和SW,这表明uqA9对SL和SW均具有多效作用。 uqA9的存在和作用在从S1和No2127(具有规则角果长度和种子大小的重新合成的DH系)杂交产生的遗传上不同的RIL中得到了证实。在一个残留的cqSLA9杂合子系中,个体在长角果长度上显示出显着差异。这项研究的结果表明,S1突变体中的长角果长度主要受cqSLA9基因座控制,适用于油菜育种中的精细作图和标记辅助选择,以实现高产量。

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