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杂交樱花品种‘Somei-Yoshino’(樱属×江户彼岸樱)的分阶段基因组序列。

Phased genome sequence of an interspecific hybrid flowering cherry, 'Somei-Yoshino' (Cerasus × yedoensis).

机构信息

Kazusa DNA Research Institute, Japan.

Shimane University, Japan.

出版信息

DNA Res. 2019 Oct 1;26(5):379-389. doi: 10.1093/dnares/dsz016.

Abstract

We report the phased genome sequence of an interspecific hybrid, the flowering cherry 'Somei-Yoshino' (Cerasus × yedoensis). The sequence data were obtained by single-molecule real-time sequencing technology, split into two subsets based on genome information of the two probable ancestors, and assembled to obtain two haplotype phased genome sequences of the interspecific hybrid. The resultant genome assembly consisting of the two haplotype sequences spanned 690.1 Mb with 4,552 contigs and an N50 length of 1.0 Mb. We predicted 95,076 high-confidence genes, including 94.9% of the core eukaryotic genes. Based on a high-density genetic map, we established a pair of eight pseudomolecule sequences, with highly conserved structures between the two haplotype sequences with 2.4 million sequence variants. A whole genome resequencing analysis of flowering cherries suggested that 'Somei-Yoshino' might be derived from a cross between C. spachiana and either C. speciosa or its relatives. A time-course transcriptome analysis of floral buds and flowers suggested comprehensive changes in gene expression in floral bud development towards flowering. These genome and transcriptome data are expected to provide insights into the evolution and cultivation of flowering cherry and the molecular mechanism underlying flowering.

摘要

我们报告了一个种间杂种,即樱花‘Somei-Yoshino’(樱属×江户彼岸樱)的分阶段基因组序列。该序列数据是通过单分子实时测序技术获得的,根据两个可能的祖先的基因组信息将其分为两个子集,并组装成种间杂种的两个单倍型相位基因组序列。由两个单倍型序列组成的基因组组装跨度为 690.1 Mb,有 4552 个 contigs,N50 长度为 1.0 Mb。我们预测了 95076 个高可信度基因,包括 94.9%的核心真核基因。基于高密度遗传图谱,我们建立了一对 8 条假染色体序列,两个单倍型序列之间具有高度保守的结构,有 240 万个序列变异。对樱花的全基因组重测序分析表明,‘Somei-Yoshino’可能是由 C. spachiana 与 C. speciosa 或其亲缘种杂交产生的。对花芽和花朵的时间进程转录组分析表明,在向开花发育的花芽发育过程中,基因表达发生了全面变化。这些基因组和转录组数据有望为樱花的进化和栽培以及开花的分子机制提供深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fefd/6796508/94a3351d31df/dsz016f1.jpg

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