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Genome evolution and diversity of wild and cultivated rice species

Author

Listed:
  • Weixiong Long

    (Jiangxi Academy of Agricultural Sciences)

  • Qiang He

    (Hebei University)

  • Yitao Wang

    (Hebei University)

  • Yu Wang

    (Hebei University)

  • Jie Wang

    (Jiangxi Academy of Agricultural Sciences)

  • Zhengqing Yuan

    (Wuhan University)

  • Meijia Wang

    (Hebei University)

  • Wei Chen

    (Jiangxi Academy of Agricultural Sciences)

  • Lihua Luo

    (Jiangxi Academy of Agricultural Sciences)

  • Laiyang Luo

    (Jiangxi Academy of Agricultural Sciences)

  • Weibiao Xu

    (Jiangxi Academy of Agricultural Sciences)

  • Yonghui Li

    (Jiangxi Academy of Agricultural Sciences)

  • Wei Li

    (Hebei University)

  • Longan Yan

    (Jiangxi Academy of Agricultural Sciences)

  • Yaohui Cai

    (Jiangxi Academy of Agricultural Sciences)

  • Huilong Du

    (Hebei University)

  • Hongwei Xie

    (Jiangxi Academy of Agricultural Sciences)

Abstract

Wild species of crops serve as a valuable germplasm resource for breeding of modern cultivars. Rice (Oryza sativa L.) is a vital global staple food. However, research on genome evolution and diversity of wild rice species remains limited. Here, we present nearly complete genomes of 13 representative wild rice species. By integrating with four previously published genomes for pangenome analysis, a total of 101,723 gene families are identified across the genus, including 9834 (9.67%) core gene families. Additionally, 63,881 gene families absent in cultivated rice species but present in wild rice species are discovered. Extensive structural rearrangements, sub-genomes exchanges, widespread allelic variations, and regulatory sequence variations are observed in wild rice species. Interestingly, expanded but less diverse disease resistance genes in the genomes of cultivated rice, likely due to the loss of some resistance genes and the fixing and amplification of genes encoding resistance genes to specific diseases during domestication and artificial selection. This study not only reveals natural variations valuable for gene-level studies and breeding selection but also enhances our understanding on rice evolution and domestication.

Suggested Citation

  • Weixiong Long & Qiang He & Yitao Wang & Yu Wang & Jie Wang & Zhengqing Yuan & Meijia Wang & Wei Chen & Lihua Luo & Laiyang Luo & Weibiao Xu & Yonghui Li & Wei Li & Longan Yan & Yaohui Cai & Huilong Du, 2024. "Genome evolution and diversity of wild and cultivated rice species," Nature Communications, Nature, vol. 15(1), pages 1-16, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-54427-3
    DOI: 10.1038/s41467-024-54427-3
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    1. Sean Walkowiak & Liangliang Gao & Cecile Monat & Georg Haberer & Mulualem T. Kassa & Jemima Brinton & Ricardo H. Ramirez-Gonzalez & Markus C. Kolodziej & Emily Delorean & Dinushika Thambugala & Valent, 2020. "Multiple wheat genomes reveal global variation in modern breeding," Nature, Nature, vol. 588(7837), pages 277-283, December.
    2. Wensheng Wang & Ramil Mauleon & Zhiqiang Hu & Dmytro Chebotarov & Shuaishuai Tai & Zhichao Wu & Min Li & Tianqing Zheng & Roven Rommel Fuentes & Fan Zhang & Locedie Mansueto & Dario Copetti & Millicen, 2018. "Genomic variation in 3,010 diverse accessions of Asian cultivated rice," Nature, Nature, vol. 557(7703), pages 43-49, May.
    3. Yong Zhou & Zhichao Yu & Dmytro Chebotarov & Kapeel Chougule & Zhenyuan Lu & Luis F. Rivera & Nagarajan Kathiresan & Noor Al-Bader & Nahed Mohammed & Aseel Alsantely & Saule Mussurova & João Santos & , 2023. "Pan-genome inversion index reveals evolutionary insights into the subpopulation structure of Asian rice," Nature Communications, Nature, vol. 14(1), pages 1-14, December.
    4. Xingming Sun & Haiyan Xiong & Conghui Jiang & Dongmei Zhang & Zengling Yang & Yuanping Huang & Wanbin Zhu & Shuaishuai Ma & Junzhi Duan & Xin Wang & Wei Liu & Haifeng Guo & Gangling Li & Jiawei Qi & C, 2022. "Natural variation of DROT1 confers drought adaptation in upland rice," Nature Communications, Nature, vol. 13(1), pages 1-17, December.
    5. Huilong Du & Ying Yu & Yanfei Ma & Qiang Gao & Yinghao Cao & Zhuo Chen & Bin Ma & Ming Qi & Yan Li & Xianfeng Zhao & Jing Wang & Kunfan Liu & Peng Qin & Xin Yang & Lihuang Zhu & Shigui Li & Chengzhi L, 2017. "Sequencing and de novo assembly of a near complete indica rice genome," Nature Communications, Nature, vol. 8(1), pages 1-12, August.
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