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首页> 外文期刊>The New Phytologist >When fathers are instant losers: homogenization of rDNA loci in recently formed Cardamine X schulzii trigenomic allopolyploid
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When fathers are instant losers: homogenization of rDNA loci in recently formed Cardamine X schulzii trigenomic allopolyploid

机译:当父亲是立即的失败者时:最近形成的Cardamine X schulzii三基因组同种多倍体中的rDNA基因座均质化

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Recently formed allopolyploids represent an excellent system to study the impacts of hybridization and genomic duplication on genome structure and evolution. Here we explored the 35S rRNA genes (rDNA) in the Cardamine x schulzii allohexaploid that was formed by two subsequent hybridization events within the past c. 150 yr. The rDNA loci were analyzed by cloning, next generation sequencing (NGS), RT-PCR and FISH methods. The primary C. x insueta triploid hybrid derived from C. rivularis (female) and C. amara (male) had gene ratios highly skewed towards maternal sequences. Similarly, C. x schulzii, originating from the secondary hybridization event involving C. x insueta (female) and C. pratensis (male), showed a reduction in paternal rDNA homeologs despite an excess of chromosomes inherited from C. pratensis. We also identified novel rDNA loci in C. x schulzii, suggesting that lost loci might be slowly reinstalled by translocation (but not recombination) of genes from partner genomes. Prevalent clonal propagation of allopolyploids, C. x insueta and C. x schulzii, indicates that concerted evolution of rDNA may occur in the absence of extensive meiotic cycles. Adoption of NGS in rDNA variant analysis is highly informative for deciphering the evolutionary histories of allopolyploid species with ongoing homogenization processes
机译:最近形成的同质多倍体代表了研究杂交和基因组重复对基因组结构和进化的影响的优良系统。在这里,我们探索了Cardamine x schulzii异源六倍体中的35S rRNA基因(rDNA),该异源由过去c内的两次后续杂交事件形成。 150岁通过克隆,下一代测序(NGS),RT-PCR和FISH方法分析了rDNA基因座。源自C. rivularis(雌性)和C. amara(雄性)的初级C. x insueta三倍体杂种具有高度偏向母体序列的基因比例。类似地,起源于C. x insueta(雌性)和C. pratensis(雄性)的二次杂交事件的C. x schulzii显示,尽管从C. pratensis继承的染色体过多,但父本rDNA同源物却减少了。我们还发现了C. x schulzii中的新型rDNA基因座,这表明丢失的基因座可能会通过从伴侣基因组中的基因移位(而不是重组)而缓慢地重新安装。同种多倍体C. x insueta和C. x schulzii的普遍克隆繁殖表明,在没有广泛减数分裂周期的情况下,可能会发生rDNA的协同进化。在rDNA变异分析中采用NGS有助于解密正在进行的均质化过程的同种多倍体物种的进化历史

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