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Draft genome sequence of wild Prunus yedoensis reveals massive inter-specific hybridization between sympatric flowering cherries

机译:野生蛋白酶叶氏野生植物的基因组序列草案揭示了SympaTric开花樱桃之间的大规模杂交

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摘要

Abstract Background Hybridization is an important evolutionary process that results in increased plant diversity. Flowering Prunus includes popular cherry species that are appreciated worldwide for their flowers. The ornamental characteristics were acquired both naturally and through artificially hybridizing species with heterozygous genomes. Therefore, the genome of hybrid flowering Prunus presents important challenges both in plant genomics and evolutionary biology. Results We use long reads to sequence and analyze the highly heterozygous genome of wild Prunus yedoensis. The genome assembly covers > 93% of the gene space; annotation identified 41,294 protein-coding genes. Comparative analysis of the genome with 16 accessions of six related taxa shows that 41% of the genes were assigned into the maternal or paternal state. This indicates that wild P. yedoensis is an F1 hybrid originating from a cross between maternal P. pendula f. ascendens and paternal P. jamasakura, and it can be clearly distinguished from its confusing taxon, Yoshino cherry. A focused analysis of the S-locus haplotypes of closely related taxa distributed in a sympatric natural habitat suggests that reduced restriction of inter-specific hybridization due to strong gametophytic self-incompatibility is likely to promote complex hybridization of wild Prunus species and the development of a hybrid swarm. Conclusions We report the draft genome assembly of a natural hybrid Prunus species using long-read sequencing and sequence phasing. Based on a comprehensive comparative genome analysis with related taxa, it appears that cross-species hybridization in sympatric habitats is an ongoing process that facilitates the diversification of flowering Prunus.
机译:摘要背景杂交是一种重要的进化过程,导致植物多样性增加。开花的李古包括普遍为他们的花卉欣赏的普遍樱桃种类。天然和通过具有杂交基因组的人工杂交物种的观赏特征。因此,杂交开花的基因组在植物基因组学和进化生物学中都具有重要挑战。结果我们使用长读取来序列和分析野生氏菌野生植物的高杂合子基因组。基因组组装涵盖基因空间的93%;注释鉴定了41,294个蛋白质编码基因。具有16种相关素的基因组的比较分析表明,将41%的基因分配到母体或父体状态。这表明野生P. yedoensis是源自母体P. pendula f之间的交叉的F1杂交。 Ascendens和Paternal P. Jamasakura,它可以清楚地区别于其令人困惑的分类赛,Yoshino Cherry。在一次性自然栖息地分布的密切相关分类的S-Locus单倍型的重点分析表明,由于强杂化的自我不相容性,减少了对特异性杂交的限制可能促进野生氏野生物物种的复杂杂交和a混合群。结论我们使用长读取测序和序列序列报告了天然杂交蛋白物种的基因组组装草案。基于与相关征草的综合比较基因组分析,似乎在Sympatric栖息地中的跨物种杂交是一个持续的过程,促进了开花李多的多样化。

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