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The application of GBS markers for extending the dense genetic map of rye (Secale cereale L.) and the localization of the Rfc1 gene restoring male fertility in plants with the C source of sterility-inducing cytoplasm

机译:GBS标记在扩展黑麦(Secale graine L.)致密遗传图谱和恢复具有雄性不育性C源的植物的Rfc1基因定位中的应用

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摘要

Genotyping by sequencing (GBS) is an efficient method of genotyping in numerous plant species. One of the crucial steps toward the application of GBS markers in crop improvement is anchoring them on particular chromosomes. In rye (Secale cereale L.), chromosomal localization of GBS markers has not yet been reported. In this paper, the application of GBS markers generated by the DArTseq platform for extending the high-density map of rye is presented. Additionally, their application is used for the localization of the Rfc1 gene that restores male fertility in plants with the C source of sterility-inducing cytoplasm. The total number of markers anchored on the current version of the map is 19,081, of which 18,132 were obtained from the DArTseq platform. Numerous markers co-segregated within the studied mapping population, so, finally, only 3397 unique positions were located on the map of all seven rye chromosomes. The total length of the map is 1593 cM and the average distance between markers is 0.47 cM. In spite of the resolution of the map being not very high, it should be a useful tool for further studies of the Secale cereale genome because of the presence on this map of numerous GBS markers anchored for the first time on rye chromosomes. The Rfc1 gene was located on high-density maps of the long arm of the 4R chromosome obtained for two mapping populations. Genetic maps were composed of DArT, DArTseq, and PCR-based markers. Consistent mapping results were obtained and DArTs tightly linked to the Rfc1 gene were successfully applied for the development of six new PCR-based markers useful in marker-assisted selection.Electronic supplementary materialThe online version of this article (doi:10.1007/s13353-016-0347-4) contains supplementary material, which is available to authorized users.
机译:测序基因分型(GBS)是在许多植物物种中进行基因分型的有效方法。在作物改良中应用GBS标记的关键步骤之一是将其锚定在特定染色体上。在黑麦(Secale graine L.)中,尚未报道GBS标记的染色体定位。本文介绍了由DArTseq平台生成的GBS标记在扩展黑麦高密度图谱中的应用。此外,它们的应用还用于Rfc1基因的定位,该基因可在具有C型不育诱导细胞质源的植物中恢复雄性育性。当前版本地图上锚定的标记总数为19,081,其中18,132是从DArTseq平台获得的。许多标记在研究的作图群体中共同分离,因此,最后,在所有七个黑麦染色体的图上仅定位了3397个唯一位置。地图的总长度为1593cM,标记之间的平均距离为0.47cM。尽管图谱的分辨率不是很高,但由于该图上首次出现了许多锚定在黑麦染色体上的GBS标记,因此它应该是进一步研究Secale谷物基因组的有用工具。 Rfc1基因位于为两个作图群体获得的4R染色体长臂的高密度图上。遗传图谱由DArT,DArTseq和基于PCR的标记组成。获得了一致的作图结果,并将与Rfc1基因紧密连接的DArT成功用于了六个新的基于PCR的标记开发,这些标记可用于标记辅助选择。电子补充材料本文的在线版本(doi:10.1007 / s13353-016- 0347-4)包含补充材料,授权用户可以使用。

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