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Directional selection for flowering time leads to adaptive evolution in Raphanus raphanistrum (Wild radish)

机译:开花时间的方向选择导致Raphanus raphanistrum(野萝卜)的适应性进化

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Herbicides have been the primary tool for controlling large populations of yield depleting weeds from agro-ecosystems, resulting in the evolution of widespread herbicide resistance. In response, nonherbicidal techniques have been developed which intercept weed seeds at harvest before they enter the soil seed bank. However, the efficiency of these techniques allows an intense selection for any trait that enables weeds to evade collection, with early-flowering ecotypes considered likely to result in early seed shedding. Using a field-collected wild radish population, five recurrent generations were selected for early maturity and three generations for late maturity. Phenology associated with flowering time and growth traits were measured. Our results demonstrate the adaptive capacity of wild radish to halve its time to flowering following five generations of early-flowering selection.?Early-maturing phenotypes had reduced height and biomass at maturity, leading to less competitive, more prostrate growth forms. Following three generations of late-flowering selection, wild radish doubled its time to flowering time leading to increased biomass and flowering height at maturity. This study demonstrates the potential for the rapid evolution in growth traits in response to highly effective seed collection techniques that imposed a selection on weed populations within agro-ecosystems at harvest.
机译:除草剂一直是​​控制来自农业生态系统的大批消耗产量杂草的主要工具,从而导致了广泛的除草剂耐药性的演变。作为响应,已经开发了非除草技术,该技术可在收获时在杂草种子进入土壤种子库之前对其进行拦截。然而,这些技术的效率允许对任何能够使杂草逃避采集的性状进行严格的选择,认为早花的生态型很可能导致种子早脱落。使用野外采集的野萝卜种群,选择了五个轮回世代进行早期成熟,选择了三个世代进行了后期成熟。测量了与开花时间和生长性状相关的物候。我们的结果证明了野生萝卜在经过五代早期开花选择后具有适应能力,从而将其开花时间减少了一半。早熟表型在成熟时具有降低的高度和生物量,从而导致竞争性降低,生长更加平坦。经过三代的后期开花选择,野生萝卜的开花时间翻了一倍,导致成熟时生物量和开花高度增加。这项研究表明,响应于高效的种子收集技术,生长特性在快速发展中具有潜力,该技术对收获时农业生态系统内的杂草种群施加了选择。

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