首页> 外文期刊>Molecular Breeding >Mapping of the Ogura fertility restorer gene Rfo and development of Rfo allele-specific markers in canola (Brassica napus L.)
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Mapping of the Ogura fertility restorer gene Rfo and development of Rfo allele-specific markers in canola (Brassica napus L.)

机译:小菜育性恢复基因Rfo的定位和Rfo等位基因特异性标记在油菜中的发育(甘蓝型油菜)

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摘要

Ogura cytoplasmic male sterility (CMS) and its corresponding nuclear fertility restorer gene, Rfo, have been introduced from radish to Brassica species by interspecific crosses. Rfo restores male fertility by altering the translational expression of Orf138, a mitochondrial gene, whose expression results in the male sterile phenotype. This system has been extensively investigated and breeding restorer lines for the Ogura CMS has become a major objective for hybrid seed production in many canola breeding programs. In this study, we have sequenced genomic clones of Rfo amplified from a canola restorer line R2000, licensed from INRA, France, and a Dow AgroSciences non-restorer line Nexera 705 using primers designed from the radish Rfo sequence (GenBank accession AJ550021). Sequence alignment revealed three homologous sequences of Rfo. Two of the sequences were present in both R2000 and Nexera 705 but the third one was present only in R2000. These results suggested that the first two sequences could be the homoeologous sequences of Rfo already existing in the canola genome and the third one could be the radish Rfo introduced into canola. Based on the sequence differences between the restorer and non-restorer lines, Rfo allele-specific PCR markers were developed. We also developed a high throughput, Rfo allele-specific Invader? assay through Third Wave Technologies. Linkage analysis revealed a co-segregation between the allele-specific marker and the phenotypes for fertility restoration. This allele-specific marker has been mapped in the linkage group N19 and proved to be very useful for direct selection of Rfo alleles for fertility restoration during marker-assisted introgression of the Ogura restorer for hybrid development in canola.
机译:Ogura胞质雄性不育(CMS)及其相应的核育性恢复基因Rfo已通过种间杂交从萝卜引入芸苔属。 Rfo通过改变线粒体基因Orf138的翻译表达来恢复男性的生育能力,Orf138的表达导致雄性不育表型。该系统已得到广泛研究,Ogura CMS的育种恢复系已成为许多油菜育种计划中杂交种子生产的主要目标。在这项研究中,我们使用从萝卜Rfo序列设计的引物(GenBank登录号AJ550021),对从法国INRA许可的双低油菜籽恢复系R2000和道氏AgroSciences非恢复系Nexera 705扩增的Rfo的基因组克隆进行了测序。序列比对揭示了Rfo的三个同源序列。 R2000和Nexera 705中均存在两个序列,但R2000中仅存在第三个序列。这些结果表明,前两个序列可能是芥花油菜基因组中已经存在的Rfo的同源序列,而第三个序列可能是引入油菜中的萝卜Rfo。根据恢复系和非恢复系之间的序列差异,开发了Rfo等位基因特异性PCR标记。我们还通过Third Wave Technologies开发了高通量,Rfo等位基因特异的Invader?检测方法。连锁分析揭示了等位基因特异性标记和表型之间的共分离,以恢复生育能力。该等位基因特异性标记已被定位在连锁群N19中,并被证明对于在小仓菜恢复系的标记辅助渗入过程中直接选择Rfo等位基因进行育性恢复非常有用。

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