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首页> 外文期刊>Molecular Breeding >Improvement of the recessive genic male sterile lines with a subgenomic background in Brassica napus by molecular marker-assisted selection
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Improvement of the recessive genic male sterile lines with a subgenomic background in Brassica napus by molecular marker-assisted selection

机译:利用分子标记辅助选择改良甘蓝型油菜具有亚基因组背景的隐性基因雄性不育系

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摘要

Both the pollination control system and genetic distance are major factors in the utilization of crop heterosis. The recessive genic male sterile line (RGMS) 7-7365A (Bnms3ms3ms4ms4) has been widely applied to hybrid seed production because it can generate a completely male sterile population by crossing with the 7-7365C temporary line (Bnms3ms3rfrf). In this study, the sterile genes of 7-7365A were transferred to the new Brassica napus lines 7-749 and 7-750 with a high content of subgenomes by backcross breeding. We used the amplified fragment length polymorphism (AFLP) technique combined with bulk segregant analysis (BSA) to identify markers linked to the BnMs4 gene. Twelve AFLP markers linked to the BnMs4 gene were identified. Of them, SA06MG09 and P08MG16 were the closest makers, which were on either side of the gene at a distance of 0.9 and 0.8 cM, respectively. Twenty AFLP primer combinations were used to screen the F2, BC1F3, and BC2F4 populations from the breeding program, and the markers linked to the BnMs3 and BnMs4 genes were used to screen the BC2F4 populations. As a result, we obtained two types of improved sterile lines, 7-749A and 7-750A, and their indexes of subgenomic components (ISG) were 44.2-49.8 and 20.2-26.6%, respectively. The combining ability analyses of seed yield character were conducted in the crosses from the three sterile lines and ten restorers within a random block design in three environments for two successive years. The general combining ability (GCA) of the two improved sterile lines were significantly higher than the GCA of 7-7365A in every environment tested. The two improved sterile lines had stability in seed yield, and they will be used in the future for hybrid seed production.
机译:授粉控制系统和遗传距离都是利用作物杂种优势的主要因素。隐性基因雄性不育系(RGMS)7-7365A(Bnms3ms3ms4ms4)已广泛用于杂交种子生产,因为它可以通过与7-7365C临时系(Bnms3ms3rfrf)杂交产生完全雄性不育种群。在这项研究中,通过回交育种,将7-7365A的不育基因转移到了新的甘蓝型油菜品系7-749和7-750,它们具有较高的亚基因组含量。我们使用扩增的片段长度多态性(AFLP)技术结合本体分离分析(BSA)来鉴定与BnMs4基因相关的标记。鉴定了十二个与BnMs4基因连锁的AFLP标记。其中SA06MG09和P08MG16是最接近的基因,它们在基因的两侧分别相距0.9和0.8 cM。使用20种AFLP引物组合从育种程序中筛选F2,BC1F3和BC2F4种群,并使用与BnMs3和BnMs4基因相关的标记物筛选BC2F4种群。结果,我们获得了两种类型的改良无菌株系7-749A和7-750A,它们的亚基因组成分指数(ISG)分别为44.2-49.8和20.2-26.6%。连续两年,在三个环境中的随机区组设计中,从三个无菌系和十个恢复系的杂交中进行了种子产量性状的结合能力分析。在每种测试的环境中,两种改良的无菌系的总体结合能力(GCA)明显高于7-7365A的GCA。两条改良的不育系具有稳定的种子产量,将来将用于杂交种子生产。

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