首页> 外文期刊>Korean Journal of Horticultural Science & Technology >Application of the Molecular Marker in Linkage Disequilibrium with Ms, a Restorer-of-fertility Locus, for Improvement of Onion Breeding Efficiency
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Application of the Molecular Marker in Linkage Disequilibrium with Ms, a Restorer-of-fertility Locus, for Improvement of Onion Breeding Efficiency

机译:分子标记在与不育系Ms连锁不平衡中的应用,以提高洋葱的育种效率

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摘要

To analyze the linkage relationships among molecular markers recently reported to be linked to onion (Allium cepa L.) Ms, a restorer-of-fertility locus, in onion (Allium cepa L.), three single nucleotide polymorphism markers were converted into cleaved amplified polymorphic sequence (CAPS) markers based on onion transcriptome sequences and the rice genome database. Analysis of the recombinants selected from 4,273 segregating plants using CAPS and other linked markers demonstrated the jnurf13 and jnurf610 markers to perfectly co-segregate with the Ms locus. In contrast to jnurf13, the jnurf610 marker was not in perfect linkage disequilibrium with the Ms locus in diverse breeding lines. Thus, the jnurf13 marker and the marker for identification of cytoplasm types were utilized to enhance the efficiency of onion breeding through four applications. First, 89 maintainer lines containing the normal cytoplasm and homozygous recessive Ms genotypes were successfully identified from 100 breeding lines. Second, these two molecular markers were used to analyze the main sources of male-fertile contaminants frequently found in the male-sterile parental lines during F-1 hybrid seed production. The majority of the contaminants contained heterozygous Ms genotypes, indicating that pollen grains harboring the dominant Ms genotype may have been introduced during propagation of the maintainer lines. Therefore, the genetic purity of the two maintainer lines was analyzed in the third application, and the results showed that both maintainer lines contained 13-21% off-types. Finally, the two markers were used to increase the seed yield potentials of two open-pollinated varieties containing sterile cytoplasms by removing the plants harboring homozygous recessive and heterozygous Ms genotypes.
机译:为了分析最近报道与洋葱(Allium cepa L.)的育性恢复位点洋葱(Allium cepa L.)相关的分子标记之间的连锁关系,将三个单核苷酸多态性标记转化为裂解的扩增片段基于洋葱转录组序列和水稻基因组数据库的多态性序列(CAPS)标记。使用CAPS和其他链接标记对选自4,273个分离植物的重组体进行分析,结果表明jnurf13和jnurf610标记与Ms基因座完美共分离。与jnurf13相反,jnurf610标记在多种育种系中与Ms基因座没有完美的连锁不平衡。因此,通过四个应用,利用jnurf13标记和用于识别细胞质类型的标记来提高洋葱育种的效率。首先,成功地从100个育种系中鉴定出89个含有正常细胞质和纯合隐性Ms基因型的维持系。其次,这两个分子标记用于分析在F-1杂种种子生产过程中经常在雄性不育亲本系中发现的雄性可育污染物的主要来源。大多数污染物包含杂合的Ms基因型,这表明具有维持性Ms基因型的花粉粒可能已在维持系繁殖期间引入。因此,在第三次申请中分析了两个维持系的遗传纯度,结果表明两个维持系均含有13-21%的异型。最后,通过去除具有隐性和杂合性Ms基因型的植物,使用这两个标记物来增加两个含有无菌细胞质的开放授粉品种的种子产量潜力。

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