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Pan-genome and haplotype map of cassava cultivars and wild ancestors provide insights into its adaptive evolution and domestication

摘要Cassava is a highly resilient tropical crop that produces large,starchy storage roots and high biomass.However,how did cassava's remarkable environmental adaptability and key economic traits evolve from its wild species remain unclear.In this study,we obtained near complete telomere-to-telomere genome as-semblies and their haplotype forms for the cultivar AM560,the wild ancestors FLA4047 and W14,con-structed a graphic pan-genome of 30 representatives with a size of 1.15 Gb,and built a clarified evolutionary tree of 486 accessions.A comparison of structural variations and single-nucleotide variations between the ancestors and cultivated cassavas reveals predominant expansions and contractions of numbers of genes and gene families,which are mainly driven by transposons.Significant selective sweeping occurred in 122 footprints of genomes and affects 1,519 domesticated genes.We identify selective mutations in MeCSK and MeFNR2 that could promote photoreactions associated with MeNADP-ME in C4 photosynthesis in modern cassava.Coevolution of retard floral primordia and initiation of storage roots may arise from Me-COL5 variants with altered bindings to MeFT1,MeFT2,and MeTFL2.Mutations in MeMATE1 and MeGTR occur in sweet cassava,and MeAHL19 has evolved to regulate the biosynthesis,transport,and endoge-nous remobilization of cyanogenic glucosides in cassava.These extensive genomic and gene resources provided here,along with the findings on the evolutionary mechanisms responsible for beneficial traits in modern cultivars,lay a strong foundation for future breeding improvements of cassava.

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作者 Zhiqiang Xia [1] Zhenglin Du [2] Xincheng Zhou [3] Sirong Jiang [1] Tingting Zhu [4] Le Wang [4] Fei Chen [1] Luiz Carvalho [5] Meiling Zou [1] Luis Augusto Becerra Lopez-Lavalle [6] Xiaofei Zhang [6] Liangye Xu [1] Zhenyu Wang [7] Meili Chen [2] Xin Guo [1] Shujuan Wang [1] Mengtao Li [1] Yuanchao Li [8] Haiyan Wang [9] Shisheng Liu [1] Yuting Bao [1] Long Zhao [10] Chenji Zhang [1] Jianjia Xiao [1] Fengguang Guo [1] Xu Shen [1] Haozheng Li [1] Cheng Lu [9] Fei Qiao [11] Hernan Ceballos [6] Huabing Yan [12] Xiaochun Qin [13] Ling Ma [13] Huaifang Zhang [1] Shuang He [1] Wenming Zhao [2] Yinglang Wan [1] Yinhua Chen [1] Dongyi Huang [1] Kaimian Li [11] Bin Liu [1] Ming Peng [3] Weixiong Zhang [14] Birger Lindberg M?ller [15] Xin Chen [3] Ming-Cheng Luo [4] Jingfa Xiao [2] Wenquan Wang [1] 学术成果认领
作者单位 National Key Laboratory of Biotechnology and Breeding of Tropical Crops,Hainan University,Haikou 570228,China [1] National Genomics Data Center,Beijing Institute of Genomics,Chinese Academy of Sciences and China National Center for Bioinformation,Beijing 100101,China [2] National Key Laboratory of Biotechnology and Breeding of Tropical Crops,Hainan University,Haikou 570228,China;Institute of Tropical Bioscience and Biotechnology,Chinese Academy of Tropical Agricultural Sciences(CATAS),Haikou 571101,China [3] Department of Plant Sciences,University of California,Davis,Davis,CA 95616,USA [4] Brazilian Enterprise for Agricultural Research(EMBRAPA),Genetic Resources and Biotechnology,Brasilia 70770,Brazil [5] International Center for Tropical Agriculture(CIAT),Cali 6713,Colombia [6] Institute of Nanfan & Seed Industry,Guangdong Academy of Sciences,Guangzhou 510316,China [7] State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources/College of Life Science and Technology,Guangxi University,Nanning 530004,China [8] Institute of Tropical Bioscience and Biotechnology,Chinese Academy of Tropical Agricultural Sciences(CATAS),Haikou 571101,China [9] The Academy of Agriculture and Forestry Sciences,Qinghai University,Xining 810016,China [10] Tropical Crop Genetic Resources Institute,Chinese Academy of Tropical Agricultural Sciences(CATAS),Haikou 571700,China [11] Economic Crop Institute,Guangxi Academy of Agricultural Sciences,Nanning,China [12] School of Biological Science and Technology,University of Jinan,Jinan,China [13] Department of Health Technology and Informatics,Department of Computing,The Hong Kong Polytechnic University,Hong Kong,China [14] Plant Biochemistry Laboratory,Department of Plant and Environmental Sciences,University of Copenhagen,DK-1871 Frederiksberg C,Denmark [15]
DOI 10.1016/j.molp.2025.05.014
发布时间 2025-12-25(万方平台首次上网日期,不代表论文的发表时间)
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分子植物(英文版)

分子植物(英文版)

2025年6期

1047-1071页

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