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Selection on spur shape in Impatiens capensis

机译:凤仙花正刺形状的选择

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Rapid speciation within some plant families has been attributed to the evolution of floral spurs and to the effect of spur length on plant reproductive success. The flowers of Impatiens capensis (jewelweed) possess a long, curved spur in which nectar is produced and stored. Spur length and curvature varies among plants within one population. Here I document that spur shape is variable in natural populations, variation within plants is less than variation among plants, and spur shape is correlated with components of female and male reproductive success. The apparent natural selection is weakly directional in 1 of 2 years, with greatest seed production and pollen removal occurring in flowers with the greatest spur curvature. Bee pollinator visit length is longest at flowers with highly curved spurs, and they leave less nectar in these spurs than in flowers with straighter spurs. Spur angle evolution may be limited, at least in part, by opposing selection by nectar-robbers who prefer to visit flowers with greater spur curvature. Other factors that might contribute to the maintenance of spur angle variation are temporal variation in the strength of selection and potential genetic correlations of spur shape with other traits under selection.
机译:在某些植物科中迅速形成树种的原因是花刺的发展和刺长对植物繁殖成功的影响。 Impatiens capensis(宝石)的花具有弯曲的长刺,在其中产生并贮藏花蜜。一种群内不同植物的花刺长度和曲率变化。在这里,我证明了直齿形在自然种群中是可变的,植物内的变异小于植物间的变异,并且直齿形与雌性和雄性生殖成功的成分相关。在2年中的1年中,明显的自然选择是弱方向性的,在具有最大正曲率的花朵中,种子产量最高,花粉去除量最大。带有高度弯曲的马刺的花朵的蜜蜂传粉者探访时间最长,与具有直的马刺的花朵相比,它们在这些马刺中留下的花蜜更少。直角的演变可能至少部分地受到甘露强盗反对的选择的限制,这些强盗更喜欢参观具有较大直角弯曲度的花朵。可能有助于保持正齿轮角度变化的其他因素是选择强度的时间变化以及正齿轮形状与选择中其他特征的潜在遗传相关性。

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