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对23种燕麦属物种的35份种质进行的超级泛基因组分析突显了它们复杂的进化历史和广泛的基因组多样性。

Super-pangenome analyses across 35 accessions of 23 Avena species highlight their complex evolutionary history and extensive genomic diversity.

作者信息

Zhang Hongyu, Liu Ningkun, Wang Yaru, Zheng Xinyuan, Li Wei, Liu Ze, Liu Jianan, Wang Yu, Xing Longsheng, Li Tao, Yun Yange, Zhou Qinghong, Wang Meijia, Qin Yujie, Yan Jinjiang, Gong Zhizhong, He Qiang, Du Huilong

机构信息

College of Life Sciences, Institute of Life Science and Green Development, Hebei University, Baoding, China.

Hebei Basic Science Center for Biotic Interaction, Hebei University, Baoding, China.

出版信息

Nat Genet. 2025 Aug 20. doi: 10.1038/s41588-025-02294-z.

Abstract

Common oat, belonging to the genus Avena with 30 recognized species, is a nutritionally important cereal crop and high-quality forage worldwide. Here, we construct a genus-level super-pangenome of Avena comprising 35 high-quality genomes from 14 cultivated oat accessions and 21 wild species. The fully resolved phylogenomic analysis unveils the origin and evolutionary scenario of Avena species, and the super-pangenome analysis identifies 26.62% and 59.93% specific genes and haplotypes in wild species. We delineate the landscape of structural variations (SVs) and the transcriptome profile based 1,401 RNA-sequencing (RNA-seq) samples from diverse abiotic stress treatments in oat. We highlight the crucial role of SVs in modulating gene expression and shaping adaptation to diverse stresses. Further combining SV-based genome-wide association studies (GWASs), we characterize 13 candidate genes associated with drought resistance such as AsARF7, validated by transgenic oat lines. Our study provides unprecedented genomic resources to facilitate genomic, evolution and molecular breeding research in oat.

摘要

普通燕麦属于燕麦属,该属有30个已确认的物种,是全球一种具有重要营养意义的谷类作物和优质饲料。在此,我们构建了一个燕麦属水平的超级泛基因组,它包含来自14个栽培燕麦种质和21个野生种的35个高质量基因组。全面解析的系统发育基因组分析揭示了燕麦属物种的起源和进化历程,而超级泛基因组分析则在野生种中鉴定出了26.62%的特异性基因和59.93%的特异性单倍型。我们基于来自燕麦不同非生物胁迫处理的1401个RNA测序(RNA-seq)样本,描绘了结构变异(SVs)图谱和转录组概况。我们强调了SVs在调节基因表达和塑造对多种胁迫的适应性方面的关键作用。进一步结合基于SV的全基因组关联研究(GWASs),我们鉴定出13个与抗旱性相关的候选基因,如AsARF7,并通过转基因燕麦品系进行了验证。我们的研究提供了前所未有的基因组资源,以促进燕麦的基因组学、进化和分子育种研究。

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