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Unraveling ancient hexaploidy through multiply-aligned angiosperm gene maps

机译:通过多重排列的被子植物基因图谱揭示古代六倍体

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摘要

Large-scale (segmental or whole) genome duplication has been recurring in angiosperm evolution. Subsequent gene loss and rearrangements further affect gene copy numbers and fractionate ancestral gene linkages across multiple chromosomes. The fragmented “multiple-to-multiple” correspondences resulting from this distinguishing feature of angiosperm evolution complicates comparative genomic studies. Using a robust computational framework that combines information from multiple orthologous and duplicated regions to construct local syntenic networks, we show that a shared ancient hexaploidy event (or perhaps two roughly concurrent genome fusions) can be inferred based on the sequences from several divergent plant genomes. This “paleo-hexaploidy” clearly preceded the rosid–asterid split, but it remains equivocal whether it also affected monocots. The model resulting from our multi-alignments lays the foundation for approximating the number and arrangement of genes in the last universal common ancestor of angiosperms. Comparative analysis of inferred homologous genes derived from this model shows patterns of preferential gene retention or loss after polyploidy and reveals large variability of nucleotide substitution rates among plant nuclear genomes.
机译:在被子植物进化中已经出现了大规模(部分或整个)基因组重复。随后的基因丢失和重排进一步影响了基因拷贝数和跨多个染色体的祖先基因联系的分离。由被子植物进化的这一独特特征导致的零散的“多对多”对应关系使比较基因组学研究变得复杂。使用一个强大的计算框架,它结合了来自多个直系同源和重复区域的信息,以构建局部同构网络,我们表明可以根据几个不同植物基因组的序列推断出一个共享的古代六倍体事件(或者可能是两个大致同时发生的基因组融合)。这种“古六倍体”显然先于玫瑰红-甾体分裂,但对于它是否也影响单子叶植物仍然是模棱两可的。由我们的多重比对得出的模型为近似最后被子植物通用祖先中基因的数量和排列奠定了基础。从该模型推导的同源基因的比较分析显示多倍体后优先的基因保留或丢失的模式,并揭示了植物核基因组之间核苷酸取代率的较大差异。

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