首页> 外文OA文献 >Molecular mapping of restorer-of-fertility 2 gene identified from a sugar beet (Beta vulgaris L. ssp. vulgaris) homozygous for the non-restoring restorer-of-fertility 1 allele
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Molecular mapping of restorer-of-fertility 2 gene identified from a sugar beet (Beta vulgaris L. ssp. vulgaris) homozygous for the non-restoring restorer-of-fertility 1 allele

机译:从不恢复生育力1等位基因纯合的甜菜(甜菜B. ssp。vulgaris)中鉴定的恢复力2基因的分子作图

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摘要

In the hybrid breeding of sugar beet, maintainer-genotype selection is a laborious process because of the dependence on test crossing, despite the very low occurrence of this genotype. Marker-assisted selection (MAS) of the maintainer genotype is highly desired by sugar beet breeders. The major restorer-of-fertility gene (Rf) was identified as Rf1, and its non-restoring allele (rf1) was discriminated at the DNA level; however, some of the rf1rf1 selections retained an as yet unidentified Rf, another target locus for MAS. The objective of this study was to identify this Rf. An rfrf1 plant was crossed to a cytoplasmic male-sterile sugar beet and then backcrossed to obtain progeny segregating the unidentified Rf. The progeny exhibited partial male-fertility restoration that was unstable in single plants. The segregation ratio of restored vs. non-restored plants suggested the involvement of a single Rf in this male-fertility restoration, designated as Rf2. We confirmed the feasibility of molecular tagging of Rf2 by identifying four shared amplified fragment length polymorphism (AFLP) fragments specific to 17 restored plants. Bulked segregant analysis also was performed to screen the Rf2-linked AFLP markers, which were subsequently converted into 17 sequence-tagged site markers. All the markers, as well two additional chromosome-IV-assigned markers, were linked to each other to form a single linkage map, on which Rf2 was located. Our data suggested that Rf2 is likely an allele of Z, long known as an elusive Rf gene in sugar beet. We also discuss the importance of Rf2 for sugar beet breeding.
机译:在甜菜的杂交育种中,尽管该基因型的发生率极低,但由于其依赖于测试杂交,因此选择维持基因型是一个费力的过程。甜菜育种者非常需要维持基因型的标记辅助选择(MAS)。主要的生育力恢复基因(Rf)被鉴定为Rf1,其非恢复等位基因(rf1)在DNA水平上被区分。但是,某些rf1rf1选择保留了一个尚未确定的Rf(MAS的另一个目标基因座)。这项研究的目的是确定此Rf。将rfrf1植物与细胞质雄性不育甜菜杂交,然后回交以获得分离后Rf的后代。后代表现出部分雄性育性恢复,这在单株植物中是不稳定的。恢复的植物与未恢复的植物的隔离率表明,单个Rf参与了该雄性育性恢复,称为Rf2。我们通过鉴定四个针对17个恢复植物的共享的扩增片段长度多态性(AFLP)片段,证实了Rf2分子标记的可行性。还进行了散装分离剂分析以筛选Rf2连接的AFLP标记,随后将其转换为17个序列标记的位点标记。所有标记以及两个附加的第IV染色体分配标记相互链接,以形成Rf2所在的单个连锁图。我们的数据表明Rf2可能是Z的等位基因,长期以来一直被认为是甜菜中难以捉摸的Rf基因。我们还讨论了Rf2对甜菜育种的重要性。

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