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花蜜被挥发性分泌物取代:无花蜜花朵在一种蜜蜂授粉植物物种中的潜在新作用。

Nectar Replaced by Volatile Secretion: A Potential New Role for Nectarless Flowers in a Bee-Pollinated Plant Species.

作者信息

Guimarães Elza, Tunes Priscila, de Almeida Junior Luiz D, Di Stasi Luiz C, Dötterl Stefan, Machado Silvia R

机构信息

Laboratory of Ecology and Evolution of Plant-Animal Interactions, Department of Botany, Institute of Biosciences, São Paulo State University, Botucatu, Brazil.

Graduation Program in Biological Sciences, Laboratory of Ecology and Evolution of Plant-Animal Interactions, Department of Botany, Institute of Biosciences, São Paulo State University, Botucatu, Brazil.

出版信息

Front Plant Sci. 2018 Sep 5;9:1243. doi: 10.3389/fpls.2018.01243. eCollection 2018.

Abstract

The presence of nectarless flowers in nectariferous plants is a widespread phenomenon in angiosperms. However, the frequency and distribution of nectarless flowers in natural populations, and the transition from nectariferous to nectarless flowers are poorly known. Variation in nectar production may affect mutualism stability, since energetic resource availability influences pollinators' foraging behavior. Here, we described the spatial and temporal nectar production patterns of , a bee-pollinated species that naturally presents nectarless flowers. Additionally, we compared nectariferous and nectarless floral disks in order to identify histological, subcellular and chemical changes that accompanied the loss of nectar production ability. For that we used standard methods for light and transmission electron microscopy, and gas chromatography coupled to mass spectrometry for chemical analyses. We verified that 47% of flowers did not produce nectar during the whole flower lifespan (nectarless flowers). We also observed remarkable inter-plant variation, with individuals having only nectarless flowers, others only nectariferous ones and most of them showing different proportions of both flower types, with variable nectar volumes (3-21 μl). Additionally, among nectariferous flowers, we registered two distinct rhythms of nectar production. 'Early' flowers produced nectar from 0 to 24 h, and 'late' flowers produced nectar from 24 to 48 h of anthesis. Although disks from nectariferous and nectarless flowers displayed similar histological organization, they differed strongly at subcellular level. Nectariferous ('early' and 'late') flowers exhibited a cellular apparatus typical of nectar secretion, while nectarless flowers exhibited osmophoric features. We found three aliphatic and one aromatic compound(s) that were detected in both the headspace of flowers and the disks of nectarless flowers, but not the disks of nectariferous flowers Although the remarkable variation in nectar availability may discourage pollinator visits, nectarless flowers might compensate it by producing volatile compounds that can be part of floral scent, acting as chemical attractants. Thus, nectarless flowers may be helping to maintain pollination in this scenario of trophic resource supply scarcity. We suggest that can be transitioning from a nectar-based pollination system to another resource-based or even to a deceit mechanism of pollination.

摘要

在有花蜜的植物中出现无花蜜的花朵是被子植物中一种普遍的现象。然而,自然种群中无花蜜花朵的频率和分布,以及从有花蜜花朵到无花蜜花朵的转变却鲜为人知。花蜜产量的变化可能会影响共生关系的稳定性,因为能量资源的可利用性会影响传粉者的觅食行为。在这里,我们描述了一种蜜蜂传粉的物种——[物种名称未给出]的花蜜产生的时空模式,该物种自然存在无花蜜的花朵。此外,我们比较了有花蜜和无花蜜的花盘,以确定伴随花蜜产生能力丧失而出现的组织学、亚细胞和化学变化。为此,我们使用了光学显微镜和透射电子显微镜的标准方法,以及气相色谱-质谱联用进行化学分析。我们证实,47%的花朵在整个花期都不产生花蜜(无花蜜花朵)。我们还观察到显著的植株间变异,有些个体只有无花蜜的花朵,有些只有有花蜜的花朵,而大多数个体则表现出两种花型的不同比例,花蜜量也各不相同(3 - 21微升)。此外,在有花蜜的花朵中,我们记录到了两种不同的花蜜产生节奏。“早期”花朵在开花的0至24小时产生花蜜,“晚期”花朵在开花的24至48小时产生花蜜。尽管有花蜜和无花蜜花朵的花盘显示出相似的组织学结构,但它们在亚细胞水平上有很大差异。有花蜜的(“早期”和“晚期”)花朵表现出典型的花蜜分泌细胞结构,而无花蜜的花朵表现出泌香特征。我们发现三种脂肪族化合物和一种芳香族化合物在花朵的顶空和无花蜜花朵的花盘中都能检测到,但在有花蜜花朵的花盘中却检测不到。尽管花蜜可利用性的显著变化可能会减少传粉者的访问,但无花蜜花朵可能通过产生挥发性化合物来弥补,这些挥发性化合物可以成为花香的一部分,起到化学引诱剂的作用。因此,在这种营养资源供应稀缺的情况下,无花蜜花朵可能有助于维持授粉。我们认为[物种名称未给出]可能正在从基于花蜜的授粉系统转变为另一种基于资源的授粉系统,甚至转变为一种欺骗性的授粉机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fce8/6134477/ccea5fd71737/fpls-09-01243-g001.jpg

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