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Populations of weedy crop–wild hybrid beets show contrasting variation in mating system and population genetic structure

机译:杂草作物-野生杂交甜菜种群在交配系统和种群遗传结构上表现出相反的变化

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摘要

Reproductive traits are key parameters for the evolution of invasiveness in weedy crop–wild hybrids. In Beta vulgaris, cultivated beets hybridize with their wild relatives in the seed production areas, giving rise to crop–wild hybrid weed beets. We investigated the genetic structure, the variation in first-year flowering and the variation in mating system among weed beet populations occurring within sugar beet production fields. No spatial genetic structure was found for first-year populations composed of F1 crop–wild hybrid beets. In contrast, populations composed of backcrossed weed beets emerging from the seed bank showed a strong isolation-by-distance pattern. Whereas gametophytic self-incompatibility prevents selfing in wild beet populations, all studied weed beet populations had a mixed-mating system, plausibly because of the introgression of the crop-derived Sf gene that disrupts self-incompatibility. No significant relationship between outcrossing rate and local weed beet density was found, suggesting no trends for a shift in the mating system because of environmental effects. We further reveal that increased invasiveness of weed beets may stem from positive selection on first-year flowering induction depending on the B gene inherited from the wild. Finally, we discuss the practical and applied consequences of our findings for crop-weed management.
机译:繁殖性状是杂草作物-野生杂种入侵性演变的关键参数。在寻常的Beta中,栽培甜菜与种子生产地区的野生亲缘种杂交,从而产生了作物-野生杂草甜菜。我们调查了甜菜生产田中发生的杂草甜菜种群的遗传结构,第一年开花的变异以及交配系统的变异。没有发现由F1作物-野生杂交甜菜组成的第一年种群的空间遗传结构。相比之下,由种子库中出现的回交杂草甜菜组成的种群表现出很强的按距离隔离模式。尽管配子体自我不相容性阻止了野生甜菜种群自交,但所有研究的杂草甜菜种群均具有混合交配系统,这可能是由于农作物衍生的Sf基因的渗入破坏了自我不相容性。没有发现异交率和当地杂草甜菜密度之间的显着关系,这表明由于环境影响,交配系统没有变化的趋势。我们进一步揭示,杂草甜菜的侵袭性增加可能源于第一年开花诱导的阳性选择,具体取决于从野生遗传的B基因。最后,我们讨论了研究结果对作物杂草管理的实际和应用后果。

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