Genome architecture of the allotetraploid wild grass Aegilops ventricosa reveals its evolutionary history and contributions to wheat improvement.

IF 9.4 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Communications Pub Date : 2024-09-10 DOI:10.1016/j.xplc.2024.101131
Zehou Liu,Fan Yang,Hongshen Wan,Cao Deng,Wenjing Hu,Xing Fan,Jirui Wang,Manyu Yang,Junyan Feng,Qin Wang,Ning Yang,Li Cai,Ying Liu,Hao Tang,Shizhao Li,Jiangtao Luo,Jianmin Zheng,Ling Wu,Ennian Yang,Zongjun Pu,Jizeng Jia,Jun Li,Wuyun Yang
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Abstract

The allotetraploid wild grass Aegilops ventricosa (2n=4X=28, genome DvDvNvNv) has been recognized as an important germplasm resource for wheat improvement due to its ability to tolerate biotic stresses. Especially 2NvS segment from Aegilops ventricosa, as a stable and effective resistance source, has greatly contributed to wheat improvement. The 2NvS/2AS translocation is a prevalent chromosomal translocation between common wheat and wild relatives, ranking just behind the 1B/1R translocation in importance for modern wheat breeding. Here, we assembled a high-quality chromosome-level reference genome of Ae. ventricosa RM271 with a total length of 8.67 Gb. Phylogenomic analyses revealed that the progenitor of the Dv subgenome of Ae. ventricosa was Ae. tauschii ssp. tauschii (genome DD); in contrast, the progenitor of the D subgenome of bread wheat (Triticum aestivum L.) was Ae. tauschii ssp. strangulata (genome DD). The oldest polyploidization time of Ae. ventricosa occurred ∼0.7 million years ago. The Dv subgenome of Ae. ventricosa was less conserved than the D subgenome of bread wheat. Construction of a graph-based pangenome of 2AS/6NvL (originally known as 2NvS) segments from Ae. ventricosa and other genomes in the Triticeae enables us identifying candidate resistance genes sourced from Ae. ventricosa. We identified 12 nonredundant introgressed segments from the Dv and Nv subgenomes using a large winter wheat collection representing the full diversity of the wheat European genetic pool, and 29.40% of European wheat varieties inherited at least one of these segments. The high-quality RM271 reference genome will provide a basis for cloning key genes, including the Yr17-Lr37-Sr38-Cre5 resistance gene cluster in Ae. ventricosa, and facilitate the full use of elite wild genetic resources to accelerate wheat improvement.
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异源四倍体野生草 Aegilops ventricosa 的基因组结构揭示了其进化史和对小麦改良的贡献。
异源四倍体野生草 Aegilops ventricosa(2n=4X=28,基因组 DvDvNvNv)因其耐受生物胁迫的能力而被认为是小麦改良的重要种质资源。特别是来自 Aegilops ventricosa 的 2NvS 片段,作为一种稳定而有效的抗性来源,为小麦改良做出了巨大贡献。2NvS/2AS 易位是普通小麦与野生近缘种之间普遍存在的染色体易位,在现代小麦育种中的重要性仅次于 1B/1R 易位。在此,我们组装了总长度为 8.67 Gb 的 Ae. ventricosa RM271 的高质量染色体组参考基因组。系统发生组分析表明,室女麦 Dv 亚基因组的祖先是 Ae. tauschii ssp.Ae. ventricosa 最早的多倍体化时间发生在距今 70 万年前。与面包小麦的 D 亚基因组相比,室女麦的 Dv 亚基因组的保守性较低。从文氏蜂属和其他三叶草科植物基因组中的 2AS/6NvL(原名 2NvS)片段构建基于图谱的泛基因组,使我们能够识别来自文氏蜂属的候选抗性基因。我们利用一个代表欧洲小麦基因库全部多样性的大型冬小麦集合,从 Dv 和 Nv 亚基因组中鉴定出了 12 个非冗余导入片段,29.40% 的欧洲小麦品种至少遗传了其中一个片段。高质量的RM271参考基因组将为克隆关键基因(包括文氏小麦的Yr17-Lr37-Sr38-Cre5抗性基因簇)奠定基础,并有助于充分利用精英野生遗传资源加速小麦改良。
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来源期刊
Plant Communications
Plant Communications Agricultural and Biological Sciences-Plant Science
CiteScore
15.70
自引率
5.70%
发文量
105
审稿时长
6 weeks
期刊介绍: Plant Communications is an open access publishing platform that supports the global plant science community. It publishes original research, review articles, technical advances, and research resources in various areas of plant sciences. The scope of topics includes evolution, ecology, physiology, biochemistry, development, reproduction, metabolism, molecular and cellular biology, genetics, genomics, environmental interactions, biotechnology, breeding of higher and lower plants, and their interactions with other organisms. The goal of Plant Communications is to provide a high-quality platform for the dissemination of plant science research.
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