Reference genome assemblies reveal the origin and evolution of allohexaploid oat

Yuanying Peng(Sichuan Agricultural University), Honghai Yan(Sichuan Agricultural University), Laichun Guo(BaiCheng Normal University), Cao Deng(Sichuan Agricultural University), Chunlong Wang(BaiCheng Normal University), Yubo Wang(Sichuan University), Lipeng Kang(Chinese Academy of Sciences), Pingping Zhou(Sichuan Agricultural University), Kaiquan Yu(Sichuan Agricultural University), Xiaolong Dong(Sichuan Agricultural University), Xiaomeng Liu(Sichuan Agricultural University), Zongyi Sun(Nextomics Biosciences (China)), Yun Peng(Sichuan Agricultural University), Jun Zhao(Sichuan Agricultural University), Di Deng(Sichuan Agricultural University), Yinghong Xu(Sichuan Agricultural University), Ying Li(Sichuan Agricultural University), Qiantao Jiang(Sichuan Agricultural University), Yan Li(Sichuan Agricultural University), Liming Wei(BaiCheng Normal University), Jirui Wang(Sichuan Agricultural University), Jian Ma(Sichuan Agricultural University), Ming Hao(Sichuan Agricultural University), Wei Li(Sichuan Agricultural University), Houyang Kang(Sichuan Agricultural University), Zhengsong Peng(Xichang University), Dengcai Liu(Sichuan Agricultural University), Jizeng Jia(Chinese Academy of Agricultural Sciences), Youliang Zheng(Sichuan Agricultural University), Tao Ma(Sichuan University), Yuming Wei(Sichuan Agricultural University), Fei Lü(Chinese Academy of Sciences), Changzhong Ren(BaiCheng Normal University)
Nature Genetics
July 18, 2022
Cited by 176Open Access
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Abstract

Common oat (Avena sativa) is an important cereal crop serving as a valuable source of forage and human food. Although reference genomes of many important crops have been generated, such work in oat has lagged behind, primarily owing to its large, repeat-rich polyploid genome. Here, using Oxford Nanopore ultralong sequencing and Hi-C technologies, we have generated a reference-quality genome assembly of hulless common oat, comprising 21 pseudomolecules with a total length of 10.76 Gb and contig N50 of 75.27 Mb. We also produced genome assemblies for diploid and tetraploid Avena ancestors, which enabled the identification of oat subgenomes and provided insights into oat chromosomal evolution. The origin of hexaploid oat is inferred from whole-genome sequencing, chloroplast genomes and transcriptome assemblies of different Avena species. These findings and the high-quality reference genomes presented here will facilitate the full use of crop genetic resources to accelerate oat improvement.


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