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Genomic basis of homoploid hybrid speciation within chestnut trees

机译:栗树内同性恋杂交品种的基因组

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Hybridization can drive speciation. We examine the hypothesis that Castanea henryi var. omeiensis is an evolutionary lineage that originated from hybridization between two near-sympatric diploid taxa, C. henryi var. henryi and C. mollissima. We produce a high-quality genome assembly for mollissima and characterize evolutionary relationships among related chestnut taxa. Our results show that C. henryi var. omeiensis has a mosaic genome but has accumulated divergence in all 12 chromosomes. We observe positive correlation between admixture proportions and recombination rates across the genome. Candidate barrier genomic regions, which isolate var. henryi and mollissima, are re-assorted in the hybrid lineage. We further find that the putative barrier segments concentrate in genomic regions with less recombination, suggesting that interaction between natural selection and recombination shapes the evolution of hybrid genomes during hybrid speciation. This study highlights that reassortment of parental barriers is an important mechanism in generating biodiversity.
机译:杂交可以驱动物种。我们研究了Castanea Henryi Var的假设。 Omeiensis是一种进化谱系,起源于两个近代二倍体分类株,C.Henryi var之间的杂交。 Henryi和C. Mollissima。我们为Mollissima生产了一种高质量的基因组组件,并在相关的栗子分类群之间表征进化关系。我们的结果表明,C. Henryi Var。 Omeiensis具有马赛克基因组,但在所有12条染色体中积累了差异。我们观察到整个基因组的混合物比例和重组率之间的正相关性。候选屏障基因组区域,其中分离瓦斯。 Henryi和Mollissima,在混合血统中重新划分。我们进一步发现推定的屏障段浓缩在具有较少重组的基因组区域中,表明自然选择和重组之间的相互作用在杂交物种中形成杂种基因组的演变。本研究强调了父母障碍的重命运是产生生物多样性的重要机制。

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