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首页> 外文期刊>Scientia horticulturae >Development of a codominant CAPS marker linked to the Ms locus controlling fertility restoration in onion (Allium cepa L.)
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Development of a codominant CAPS marker linked to the Ms locus controlling fertility restoration in onion (Allium cepa L.)

机译:开发一种与CAPs标记相关的CAPS标记,该位点控制着洋葱(Allium cepa L.)的繁殖力恢复

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A molecular marker associated with male fertility restoration was newly identified in onion in this study using random amplification of polymorphic DNA (RAPD) and bulk segregant analysis. A polymorphic amplicon from RAPD reaction was observed in DNA from fertile plants. The amplicon was designated as the RAPD marker OBC14.1000 and a 980-base pair (bp) nucleotide sequence was obtained. Genome walking was performed to obtain the flanking sequences of the OBC14.1000 marker to develop a co-dominant marker. The acquired sequences were a 2049-bp fragment linked to a male-fertile allele and a 1621-bp fragment linked to a male-sterile allele. Approximately 95% similarity was shown when the nucleotide sequences between fertile and sterile alleles were aligned. Using a polymorphic region containing a restriction site of Avail in a fertile allele, the RAPD marker OBC14.1000 was successfully converted into a co-dominant CAPS marker and it was designated as ACms.1100. It appeared to be positioned much closer to the restorer-of-fertility locus, Ms, based on genotyping analysis as compared to other currently available markers. No putative homology was found to the newly identified ACms.1100 marker sequences through a Blast database search and the identification of sequences is still unknown
机译:在这项研究中,使用多态性DNA(RAPD)的随机扩增和大量分离子分析,在洋葱中新发现了与雄性育性恢复相关的分子标记。在来自可育植物的DNA中观察到了来自RAPD反应的多态性扩增子。将该扩增子命名为RAPD标记OBC14.1000,并获得了980个碱基对(bp)的核苷酸序列。进行基因组行走以获得OBC14.1000标记的侧翼序列,以发展出共同主导的标记。获得的序列是与雄性可育等位基因连接的2049bp片段和与雄性不育等位基因连接的1621bp片段。当可育和无菌等位基因之间的核苷酸序列比对时,显示出约95%的相似性。使用在可育等位基因中包含Avail限制性酶切位点的多态性区域,成功将RAPD标记OBC14.1000转换为共显​​性CAPS标记,并将其命名为ACms.1100。根据基因分型分析,与目前其他可用的标记相比,它似乎更靠近生育力恢复位点Ms。未发现与新鉴定的ACms的推定同源性。通过Blast数据库搜索找到了1100个标记序列,序列的鉴定仍未知

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