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Integrative analysis of plastome,single-copy nuclear gene Pgk1 and SLAF-seq data uncovers multiple-origin and introgression history in polyploid Agropyron cristatum

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【作者】 颜浩; 张一昊; 石海伦; 许宣德; 余双炳; 闫利军; 赵彦; 吴丹丹; 张越; 程怡然; 王益; 康厚扬; 马啸; 张海琴; 周永红; 陈文杰; 沙莉娜; 凡星;

【Author】 Hao Yan;Yihao Zhang;Hailun Shi;Xuande Xu;Shuangbing Yu;Lijun Yan;Yan Zhao;Dandan Wu;Yue Zhang;Yiran Cheng;Yi Wang;Houyang Kang;Xiao Ma;Haiqin Zhang;Yonghong Zhou;Wenjie Chen;Lina Sha;Xing Fan;Triticeae Research Institute,Sichuan Agricultural University;Sichuan Academy of Grassland Science;Key Laboratory of Grassland Resources,Inner Mongolia Agricultural University;College of Grassland Science and Technology,Sichuan Agricultural University;Key Laboratory of Adaptation and Evolution of Plateau Biota,Northwest Institute of Plateau Biology,Chinese Academy of Sciences;

【通讯作者】 陈文杰;沙莉娜;凡星;

【机构】 Triticeae Research Institute,Sichuan Agricultural University; Sichuan Academy of Grassland Science; Key Laboratory of Grassland Resources,Inner Mongolia Agricultural University; College of Grassland Science and Technology,Sichuan Agricultural University; Key Laboratory of Adaptation and Evolution of Plateau Biota,Northwest Institute of Plateau Biology,Chinese Academy of Sciences;

【摘要】 Elucidating the origins and mechanisms of polyploidization requires tracing the evolutionary history of polyploid species,particularly those with complex origins.Agropyran cristatum,traditio nally regarded as an auto polyploid,exhibits characteristics indicative of a segmental allopolyploid.Here,we used phylogenetic analysis based on a low-copy nuclear gene(i.e.,Pgk1),SLAF-seq,and plastome data from20 diploid and 120 tetraploid Agropyron individuals to determine whether tetraploid A.cristatum arose from an allopolyploid or autopolyploid event.Phylogenetic analyses based on Pgk1 and SLAF-seq data identified two distinct A.cristatum lineages that corresponded to the two main Agropyron habitats in Central Asia-Eu rope and East Asia-Qinghai-Tibet Plateau.These findings,taken together with molecular dating and gene flow analyses,suggest that the East Asian tetraploid A.cristatum originated via both autopolyploidy from A cristatum and hybridization between diploid A.cristatum and A.mongolicum,with each diploid cytotype acting as a maternal donor.Furthermore,the Central Asia-Europe tetraploid A.cristatum originated solely via autopolyploidy of diploid A.cristatum.Our findings also indicate that rapid diversification of Agropyron was likely driven by climate oscillations,geographic isolation,introgressive hybridization,and chloroplast capture.These findings challenge simplistic views of autopolyploids and underscore substantial potential for achieving high levels of genetic and adaptive diversity through recurrent hybridization and reticulate evolution.

【Abstract】 Elucidating the origins and mechanisms of polyploidization requires tracing the evolutionary history of polyploid species,particularly those with complex origins.Agropyran cristatum,traditio nally regarded as an auto polyploid,exhibits characteristics indicative of a segmental allopolyploid.Here,we used phylogenetic analysis based on a low-copy nuclear gene(i.e.,Pgk1),SLAF-seq,and plastome data from20 diploid and 120 tetraploid Agropyron individuals to determine whether tetraploid A.cristatum arose from an allopolyploid or autopolyploid event.Phylogenetic analyses based on Pgk1 and SLAF-seq data identified two distinct A.cristatum lineages that corresponded to the two main Agropyron habitats in Central Asia-Eu rope and East Asia-Qinghai-Tibet Plateau.These findings,taken together with molecular dating and gene flow analyses,suggest that the East Asian tetraploid A.cristatum originated via both autopolyploidy from A cristatum and hybridization between diploid A.cristatum and A.mongolicum,with each diploid cytotype acting as a maternal donor.Furthermore,the Central Asia-Europe tetraploid A.cristatum originated solely via autopolyploidy of diploid A.cristatum.Our findings also indicate that rapid diversification of Agropyron was likely driven by climate oscillations,geographic isolation,introgressive hybridization,and chloroplast capture.These findings challenge simplistic views of autopolyploids and underscore substantial potential for achieving high levels of genetic and adaptive diversity through recurrent hybridization and reticulate evolution.

【关键词】 Polyploidy; Agropyron; SLAF-seq; Plastome; Diversification; Pgk1;
【Key words】 Polyploidy; Agropyron; SLAF-seq; Plastome; Diversification; Pgk1;
【基金】 the National Natural Science Foundation of China (Nos.31870360 and 32171603);Xining Science and Technology Major Project (2023-Z13);Qinghai Provincial Science and Technology Major Project (2023-SF-A5);Youth Innovation Promotion Association (Chinese Academy of Sciences,Grant/Award Number:Y2023116);the Qinghai Provincial central guide local science and technology development funds project (2025ZY002)
  • 【文献出处】 Plant Diversity ,植物多样性(英文版) , 编辑部邮箱 ,2026年01期
  • 【分类号】Q943
  • 【下载频次】5
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