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Gloss Colour and Grip: Multifunctional Epidermal Cell Shapes in Bee- and Bird-Pollinated Flowers

机译:光泽度颜色和附着力:蜜蜂和鸟粉花中的多功能表皮细胞形状

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摘要

Flowers bear the function of filters supporting the attraction of pollinators as well as the deterrence of floral antagonists. The effect of epidermal cell shape on the visual display and tactile properties of flowers has been evaluated only recently. In this study we quantitatively measured epidermal cell shape, gloss and spectral reflectance of flowers pollinated by either bees or birds testing three hypotheses: The first two hypotheses imply that bee-pollinated flowers might benefit from rough surfaces on visually-active parts produced by conical epidermal cells, as they may enhance the colour signal of flowers as well as the grip on flowers for bees. In contrast, bird-pollinated flowers might benefit from flat surfaces produced by flat epidermal cells, by avoiding frequent visitation from non-pollinating bees due to a reduced colour signal, as birds do not rely on specific colour parameters while foraging. Moreover, flat petal surfaces in bird-pollinated flowers may hamper grip for bees that do not touch anthers and stigmas while consuming nectar and thus, are considered as nectar thieves. Beside this, the third hypothesis implies that those flower parts which are vulnerable to nectar robbing of bee- as well as bird-pollinated flowers benefit from flat epidermal cells, hampering grip for nectar robbing bees. Our comparative data show in fact that conical epidermal cells are restricted to visually-active parts of bee-pollinated flowers, whereas robbing-sensitive parts of bee-pollinated as well as the entire floral surface of bird-pollinated flowers possess on average flat epidermal cells. However, direct correlations between epidermal cell shape and colour parameters have not been found. Our results together with published experimental studies show that epidermal cell shape as a largely neglected flower trait might act as an important feature in pollinator attraction and avoidance of antagonists, and thus may contribute to the partitioning of flower-visitors.
机译:花具有过滤功能,支持传粉媒介的吸引力以及对花药的威慑作用。表皮细胞形状对花朵的视觉表现和触觉特性的影响直到最近才被评估。在这项研究中,我们定量测量了蜜蜂或鸟类授粉的花朵的表皮细胞形状,光泽和光谱反射率,并测试了三个假设:前两个假设暗示蜜蜂授粉的花朵可能会受益于圆锥形表皮产生的视觉活性部位的粗糙表面细胞,因为它们可以增强花朵的颜色信号,以及增强蜜蜂对花朵的附着力。相比之下,鸟类授粉的花朵可能会受益于扁平表皮细胞产生的平坦表面,避免了由于颜色信号减少而导致非授粉蜜蜂频繁造访,因为鸟类在觅食时不依赖特定的色彩参数。此外,鸟类授粉的花朵中平坦的花瓣表面可能会妨碍蜜蜂食用花蜜时不接触花药和柱头的抓地力,因此被视为花蜜小偷。除此之外,第三个假设意味着那些易受蜜蜂的花蜜抢夺以及鸟类授粉的花朵的花朵部分受益于平坦的表皮细胞,从而妨碍了花蜜抢食蜜蜂的抓地力。我们的比较数据表明,圆锥形表皮细胞仅限于蜜蜂授粉花的视觉活动部分,而蜜蜂授粉的抢劫敏感部分以及鸟类授粉花的整个花表面平均具有平坦的表皮细胞。然而,尚未发现表皮细胞形状和颜色参数之间的直接相关性。我们的结果以及已发表的实验研究表明,表皮细胞的形状是很大程度上被忽略的花卉性状,可能是授粉媒介吸引和避免拮抗剂的重要特征,因此可能有助于花卉访客的分配。

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