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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Map-based cloning reveals the complex organization of the BnRf locus and leads to the identification of BnRf (b), a male sterility gene, in Brassica napus
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Map-based cloning reveals the complex organization of the BnRf locus and leads to the identification of BnRf (b), a male sterility gene, in Brassica napus

机译:基于图的克隆揭示了BnRf基因座的复杂组织,并导致了甘蓝型油菜中雄性不育基因BnRf(b)的鉴定

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The male sterility in an extensively used genic male sterility (GMS) line (9012A) in Brassica napus was regarded to be conferred by BnMs3/Bnms3 and the multiallelic BnRf locus including three alleles. We previously mapped BnRf to a 13.8 kb DNA fragment on the B. napus chromosome A7. In the present study, we isolated bacterial artificial chromosome clones individually covering the restorer allele BnRf (a) and the male-sterile allele BnRf (b) , and revealed that the candidate regions of BnRf (a) and BnRf (b) show complex structural variations relative to the maintainer allele BnRf (c). By analyzing the recombination events and the newly developed markers, we delimited BnRf (a) to a 35.9 kb DNA fragment that contained seven predicted open-reading frames (ORFs). However, genetic transformation of the ORF G14 from both the male-sterile and restorer lines into wild-type Arabidopsis plants led to a stable male-sterile phenotype matching a 9012A-derived GMS line (RG206A); moreover, the male sterility caused by G14 could be fully recovered by the restorer gene BnMs3. These facts indicate that BnRf (b) corresponds to G14 while BnRf (a) likely associates with another flanking ORF. G14 encodes a nucleus-localized chimeric protein designated as BnaA7.mtHSP70-1-like. Ectopic expression of G14 in Arabidopsis negatively regulates some vital genes responsible for tapetum degeneration, and delayed programmed cell death of tapetum and led to the developmental arrest of tetrads. Our work not only presents new insights on the hereditary model of sterility control but also lays a solid foundation for dissecting the molecular basis underlying male sterility and restoration in 9012A.
机译:BnMs3 / Bnms3和包括三个等位基因的多等位基因BnRf基因座被认为是甘蓝型油菜中广泛使用的基因雄性不育(GMS)系(9012A)中的雄性不育。我们先前将BnRf映射到甘蓝型油菜A7染色体上的13.8 kb DNA片段。在本研究中,我们分离了细菌人工染色体克隆,分别覆盖恢复等位基因BnRf(a)和雄性不育等位基因BnRf(b),并揭示了BnRf(a)和BnRf(b)的候选区域显示出复杂的结构相对于维持等位基因BnRf(c)的变异。通过分析重组事件和新开发的标记,我们将BnRf(a)分隔为一个35.9 kb的DNA片段,其中包含七个预测的开放阅读框(ORF)。然而,ORF G14从雄性不育系和恢复系遗传转化为野生型拟南芥植物导致了稳定的雄性不育表型与9012A衍生的GMS系相匹配(RG206A)。而且,由恢复基因BnMs3可以完全恢复由G14引起的雄性不育。这些事实表明BnRf(b)对应于G14,而B​​nRf(a)可能与另一个侧翼ORF相关。 G14编码称为BnaA7.mtHSP70-1-like的核定位嵌合蛋白。 G14在拟南芥中的异位表达负调控一些负责绒毡层变性的重要基因,并延缓绒毡层的程序性细胞死亡,并导致四肢发育停滞。我们的工作不仅为不育控制的遗传模型提供了新的见解,而且为剖析9012A中男性不育和恢复的分子基础奠定了坚实的基础。

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