The Aquilegia genome reveals a hybrid origin of core eudicots

被引:38
作者
Akoez, Gokce [1 ,2 ]
Nordborg, Magnus [1 ]
机构
[1] Austrian Acad Sci, Vienna Bioctr, Gregor Mendel Inst, Vienna, Austria
[2] Vienna Grad Sch Populat Genet, Vienna, Austria
基金
奥地利科学基金会;
关键词
WHOLE-GENOME; DOSAGE SENSITIVITY; EVOLUTION; GENE; DUPLICATIONS; POLYPLOIDY; CONSEQUENCES; TETRAPLOIDY; ANCESTORS; PATTERNS;
D O I
10.1186/s13059-019-1888-8
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background Whole-genome duplications (WGDs) have dominated the evolutionary history of plants. One consequence of WGD is a dramatic restructuring of the genome as it undergoes diploidization, a process under which deletions and rearrangements of various sizes scramble the genetic material, leading to a repacking of the genome and eventual return to diploidy. Here, we investigate the history of WGD in the columbine genus Aquilegia, a basal eudicot, and use it to illuminate the origins of the core eudicots. Results Within-genome synteny confirms that columbines are ancient tetraploids, and comparison with the grape genome reveals that this tetraploidy appears to be shared with the core eudicots. Thus, the ancient gamma hexaploidy found in all core eudicots must have involved a two-step process: first, tetraploidy in the ancestry of all eudicots, then hexaploidy in the ancestry of core eudicots. Furthermore, the precise pattern of synteny sharing suggests that the latter involved allopolyploidization and that core eudicots thus have a hybrid origin. Conclusions Novel analyses of synteny sharing together with the well-preserved structure of the columbine genome reveal that the gamma hexaploidy at the root of core eudicots is likely a result of hybridization between a tetraploid and a diploid species.
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页数:12
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