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Application of molecular markers in sunflower breeding

机译:分子标记在向日葵育种中的应用

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The results of the application of molecular markers in sunflower breeding obtained in the Institute of Field and Vegetable Crops in the last decade are reviewed. Our results on genetic distance (GD=7-75%) between sunflower inbred lines obtained with RAPD and SSR markers, indicate large variability and provide important information for the selection of parental lines for future crosses. Interspecific hybridization is often used in sunflower breeding. As only some populations of H. giganteus and H. maximiliani are resistant to sunflower diseases, the investigation of genetic variability in/between two species is of interest. The results obtained with SSR markers are presented. The successful hybridization between H. rigidus and H. annuus was confirmed with RAPD markers, and the variability between F1 and BC1F1 plants is discussed. Desirable alleles and haplotypes can be detected with molecular markers both in early phases of plant development and in early phases of the production of improved lines, which reduces or completely eliminates the large number of testing cycles for desirable phenotypes. CAPS markers for resistance to downy mildew, that can be used in marker assisted selection are presented. .
机译:回顾了近十年来在田间和蔬菜作物研究所获得的分子标记在向日葵育种中的应用结果。我们使用RAPD和SSR标记获得的向日葵近交系之间遗传距离(GD = 7-75%)的结果表明,变异性很大,并为选择亲本系供将来的杂交提供了重要信息。种间杂交通常用于向日葵育种。由于只有巨型H. giganteus和H. maximiliani种群对葵花病具有抗性,因此研究两个物种之间/之间的遗传变异是很有意义的。介绍了用SSR标记获得的结果。用RAPD标记证实了僵硬的H. anusus和H. annuus之间的成功杂交,并讨论了F1和BC1F1植物之间的变异性。理想的等位基因和单倍型可以在植物发育的早期阶段和改良品系生产的早期阶段用分子标记物检测,这减少或完全消除了所需表型的大量测试周期。介绍了可用于标记辅助选择的抗霜霉病的CAPS标记。 。

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