Repeated polyploidization of Gossypium genomes and the evolution of spinnable cotton fibres.

Archive ouverte

Paterson, Andrew H | Wendel, Jonathan F | Gundlach, Heidrun | Guo, Hui | Jenkins, Jerry | Jin, Dianchuan | Llewellyn, Danny | Showmaker, Kurtis C | Shu, Shengqiang | Udall, Joshua | Yoo, Mi-Jeong | Byers, Robert | Chen, Wei | Doron-Faigenboim, Adi | Duke, Mary V | Gong, Lei | Grimwood, Jane | Grover, Corrinne | Grupp, Kara | Hu, Guanjing | Lee, Tae-Ho | Li, Jingping | Lin, Lifeng | Liu, Tao | Marler, Barry S | Page, Justin T | Roberts, Alison W | Romanel, Elisson | Sanders, William S | Szadkowski, Emmanuel | Tan, Xu | Tang, Haibao | Xu, Chunming | Wang, Jinpeng | Wang, Zining | Zhang, Dong | Zhang, Lan | Ashrafi, Hamid | Bedon, Frank | Bowers, John E | Brubaker, Curt L | Chee, Peng W | Das, Sayan | Gingle, Alan R | Haigler, Candace H | Harker, David | Hoffmann, Lucia V | Hovav, Ran | Jones, Donald C | Lemke, Cornelia | Mansoor, Shahid | Ur Rahman, Mehboob | Rainville, Lisa N | Rambani, Aditi | Reddy, Umesh K | Rong, Jun-Kang | Saranga, Yehoshua | Scheffler, Brian E | Scheffler, Jodi A | Stelly, David M | Triplett, Barbara A | van Deynze, Allen | Vaslin, Maite F S | Waghmare, Vijay N | Walford, Sally A | Wright, Robert J | Zaki, Essam A | Zhang, Tianzhen | Dennis, Elizabeth S | Mayer, Klaus F X | Peterson, Daniel G | Rokhsar, Daniel S | Wang, Xiyin | Schmutz, Jeremy

Edité par CCSD ; Nature Publishing Group -

Polyploidy often confers emergent properties, such as the higher fibre productivity and quality of tetraploid cottons than diploid cottons bred for the same environments. Here we show that an abrupt five- to sixfold ploidy increase approximately 60 million years (Myr) ago, and allopolyploidy reuniting divergent Gossypium genomes approximately 1-2 Myr ago, conferred about 30-36-fold duplication of ancestral angiosperm (flowering plant) genes in elite cottons (Gossypium hirsutum and Gossypium barbadense), genetic complexity equalled only by Brassica among sequenced angiosperms. Nascent fibre evolution, before allopolyploidy, is elucidated by comparison of spinnable-fibred Gossypium herbaceum A and non-spinnable Gossypium longicalyx F genomes to one another and the outgroup D genome of non-spinnable Gossypium raimondii. The sequence of a G. hirsutum A(t)D(t) (in which 't' indicates tetraploid) cultivar reveals many non-reciprocal DNA exchanges between subgenomes that may have contributed to phenotypic innovation and/or other emergent properties such as ecological adaptation by polyploids. Most DNA-level novelty in G. hirsutum recombines alleles from the D-genome progenitor native to its New World habitat and the Old World A-genome progenitor in which spinnable fibre evolved. Coordinated expression changes in proximal groups of functionally distinct genes, including a nuclear mitochondrial DNA block, may account for clusters of cotton-fibre quantitative trait loci affecting diverse traits. Opportunities abound for dissecting emergent properties of other polyploids, particularly angiosperms, by comparison to diploid progenitors and outgroups.

Suggestions

Du même auteur

The Cytonuclear Dimension of Allopolyploid Evolution: An Example from Cotton Using Rubisco

Archive ouverte | Gong, Lei | CCSD

International audience. During allopolyploid speciation, two divergent nuclear genomes merge, yet only one (usually the maternal) of the two sets of progenitor organellar genomes is maintained. Rubisco (1,5-bisphosp...

The Brassica oleracea genome reveals the asymmetrical evolution of polyploid genomes

Archive ouverte | Liu, Shengyi | CCSD

International audience. Polyploidization has provided much genetic variation for plant adaptive evolution, but the mechanisms by which the molecular evolution of polyploid genomes establishes genetic architecture un...

The genome of the mesopolyploid crop species Brassica rapa

Archive ouverte | Wang, Xiaowu | CCSD

International audience. We report the annotation and analysis of the draft genome sequence of Brassica rapa accession Chiifu-401-42, a Chinese cabbage. We modeled 41,174 protein coding genes in the B. rapa genome, w...

Chargement des enrichissements...