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花瓣减少传粉昆虫的附着:以一种植物和苍蝇为例的研究

Petals Reduce Attachment of Insect Pollinators: A Case Study of the Plant and the Fly .

作者信息

Gorb Elena V, Gorb Stanislav N

机构信息

Department of Functional Morphology and Biomechanics, Zoological Institute, Kiel University, Am Botanischen Garten 9, 24098 Kiel, Germany.

出版信息

Insects. 2023 Mar 14;14(3):285. doi: 10.3390/insects14030285.

Abstract

In order to understand whether the petal surface in "cafeteria"-type flowers, which offer their nectar and pollen to insect pollinators in an open way, is adapted to a stronger attachment of insect pollinators, we selected the plant and the hovering fly , both being generalist species according to their pollinator's spectrum and diet, respectively. We combined cryo scanning electron microscopy examination of leaves, petals, and flower stems with force measurements of fly attachment to surfaces of these plant organs. Our results clearly distinguished two groups among tested surfaces: (1) the smooth leaf and reference smooth glass ensured a rather high attachment force of the fly; (2) the flower stem and petal significantly reduced it. The attachment force reduction on flower stems and petals is caused by different structural effects. In the first case, it is a combination of ridged topography and three-dimensional wax projections, whereas the papillate petal surface is supplemented by cuticular folds. In our opinion, these "cafeteria"-type flowers have the petals, where the colour intensity is enhanced due to papillate epidermal cells covered by cuticular folds at the micro- and nanoscale, and exactly these latter structures mainly contribute to adhesion reduction in generalist insect pollinators.

摘要

为了了解“自助餐厅”型花朵的花瓣表面是否适应于更牢固地附着传粉昆虫,这类花朵以开放的方式向传粉昆虫提供花蜜和花粉,我们分别根据传粉者范围和食性选择了广食性物种——植物 和悬停蝇 。我们将叶片、花瓣和花茎的低温扫描电子显微镜检查与苍蝇附着在这些植物器官表面的力测量相结合。我们的结果在测试表面中明确区分出两组:(1)光滑的叶片和参考光滑玻璃能确保苍蝇有相当高的附着力;(2)花茎和花瓣显著降低了附着力。花茎和花瓣上附着力的降低是由不同的结构效应引起的。在第一种情况下,是脊状地形和三维蜡质突起的组合,而乳头状花瓣表面则有角质层褶皱。我们认为,这些“自助餐厅”型花朵的花瓣在微观和纳米尺度上,由于被角质层褶皱覆盖的乳头状表皮细胞而使颜色强度增强,而正是这些结构主要导致了广食性昆虫传粉者附着力的降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3888/10054881/4c0f9a3f62d8/insects-14-00285-g001.jpg

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