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解析单倍型的野生八倍体祖先基因组揭示了从野生亲缘种到栽培草莓的基因组多样化。

Haplotype-resolved genomes of wild octoploid progenitors illuminate genomic diversifications from wild relatives to cultivated strawberry.

机构信息

Germplasm Bank of Wild Species, Yunnan Key Laboratory of Crop Wild Relatives Omics, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Nat Plants. 2023 Aug;9(8):1252-1266. doi: 10.1038/s41477-023-01473-2. Epub 2023 Aug 3.

Abstract

Strawberry is an emerging model for studying polyploid genome evolution and rapid domestication of fruit crops. Here we report haplotype-resolved genomes of two wild octoploids (Fragaria chiloensis and Fragaria virginiana), the progenitor species of cultivated strawberry. Substantial variation is identified between species and between haplotypes. We redefine the four subgenomes and track the genetic contributions of diploid species by additional sequencing of the diploid F. nipponica genome. We provide multiple lines of evidence that F. vesca and F. iinumae, rather than other described extant species, are the closest living relatives of these wild and cultivated octoploids. In response to coexistence with quadruplicate gene copies, the octoploid strawberries have experienced subgenome dominance, homoeologous exchanges and coordinated expression of homoeologous genes. However, some homoeologues have substantially altered expression bias after speciation and during domestication. These findings enhance our understanding of the origin, genome evolution and domestication of strawberries.

摘要

草莓是研究多倍体基因组进化和水果作物快速驯化的新兴模式植物。在这里,我们报道了两个野生八倍体(智利草莓和弗吉尼亚草莓)的单倍型解析基因组,它们是栽培草莓的祖种。在种间和单倍型间都发现了大量的变异。我们通过对二倍体 F. nipponica 基因组的额外测序重新定义了四个亚基因组,并追踪了二倍体物种的遗传贡献。我们提供了多条证据表明,F. vesca 和 F. iinumae 而不是其他描述的现存物种,是这些野生和栽培八倍体草莓的最接近的现存亲缘种。为了与四倍体基因副本共存,八倍体草莓经历了亚基因组优势、同源基因交换和同源基因的协调表达。然而,一些同源基因在物种形成和驯化过程中发生了显著的表达偏倚。这些发现增进了我们对草莓起源、基因组进化和驯化的理解。

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