Patterns of genomic variation reveal a single evolutionary origin of the wild allotetraploid Mimulus sookensis

生物 异交 自拍 多倍体 进化生物学 倍性 遗传算法 人口 谱系(遗传) 交配系统 遗传学 交配 生态学 基因 花粉 人口学 社会学
作者
Makenzie R. Whitener,Hayley Mangelson,Andrea L. Sweigart
出处
期刊:Evolution [Oxford University Press]
卷期号:78 (8): 1464-1477 被引量:1
标识
DOI:10.1093/evolut/qpae079
摘要

Polyploidy occurs across the tree of life and is especially common in plants. Because newly formed cytotypes are often incompatible with their progenitors, polyploidy is also said to trigger "instantaneous" speciation. If a polyploid can self-fertilize or reproduce asexually, it is even possible for one individual to produce an entirely new lineage, but how often this scenario occurs is unclear. Here, we investigate the evolutionary history of the wild allotetraploid Mimulus sookensis, which was formed through hybridization between self-compatible, diploid species in the Mimulus guttatus complex. We generate a chromosome-scale reference assembly for M. sookensis and define its distinct subgenomes. Despite previous reports suggesting multiple origins of this highly selfing polyploid, we discover patterns of population genomic variation that provide unambiguous support for a single origin. One M. sookensis subgenome is clearly derived from the selfer Mimulus nasutus, which organellar variation suggests is the maternal progenitor. The ancestor of the other subgenome is less certain, but it shares variation with both Mimulus decorus and M. guttatus, two outcrossing diploids with geographic ranges that overlap broadly with M. sookensis. This study establishes M. sookensis as an example of instantaneous speciation, likely facilitated by the polyploid's predisposition to self-fertilize.

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