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Induced mutations affecting pollinator choice in Mimulus lewisii (Phrymaceae)

机译:诱导的突变影响刘氏s(传粉科)的授粉媒介选择

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The flowering plants are one of the most phenotypically varied and wide-ranging groups of organisms on earth, and yet, we have limited understanding of the contribution of animal pollinators to the diversification of floral form. To explore the interaction between variation in floral form and pollinator behavior, we observed the foraging behavior of bumblebees (Bombus impatiens) when presented with both wild-type Mimulus lewisii plants and each of three chemically induced single-locus mutants with altered floral phenotypes, including loss of the three lower petals, loss of nectar guides, and a change in petal color patterning. We found that each of the mutants attracted successful pollinator visits at just 29–80% of the rate relative to wild-type flowers, suggesting that effective recruitment of bumblebee pollinators requires the landing platform provided by the lower petals, and visual cues provided by the nectar guides and petal color pattern. Since single-locus recessive mutations are capable of ablating the lower petals, nectar guides, and color pattern, such changes in floral form provide insight into the driving forces behind plant adaptation.
机译:开花植物是地球上表型最广泛多样的生物之一,但是,我们对动物授粉媒介对花卉形态多样化的贡献的了解有限。为了探索花型变异与传粉媒介行为之间的相互作用,我们观察了大黄蜂(凤仙花)的觅食行为,它们与野生型Mi草植物以及三个化学诱导的单基因座突变体(具有改变的花卉表型)同时出现时,包括三个下部花瓣的缺失,花蜜引导的缺失以及花瓣颜色图案的变化。我们发现,每个突变体都成功吸引了传粉者访问,相对于野生型花,传粉者的访问率仅为29%至80%,这表明有效募集大黄蜂传粉者需要较低花瓣提供的着陆平台,并且需要由花瓣提供的视觉提示。花蜜指南和花瓣颜色图案。由于单基因座隐性突变能够消融下部的花瓣,花蜜引导和颜色模式,因此这种花卉形式的变化可洞察植物适应的驱动力。

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