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Evolution and diversity of floral scent chemistry in the euglossine bee-pollinated orchid genus Gongora

机译:桉树蜜授粉的兰花属Gongora中花香化学的演变和多样性

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摘要

>•Background and Aims Animal-pollinated angiosperms have evolved a variety of signalling mechanisms to attract pollinators. Floral scent is a key component of pollinator attraction, and its chemistry modulates both pollinator behaviour and the formation of plant–pollinator networks. The neotropical orchid genus Gongora exhibits specialized pollinator associations with male orchid bees (Euglossini). Male bees visit orchid flowers to collect volatile chemical compounds that they store in hind-leg pouches to use subsequently during courtship display. Hence, Gongora floral scent compounds simultaneously serve as signalling molecules and pollinator rewards. Furthermore, because floral scent acts as the predominant reproductive isolating barrier among lineages, it has been hypothesized that chemical traits are highly species specific. A comparative analysis of intra- and inter-specific variation of floral scent chemistry was conducted to investigate the evolutionary patterns across the genus.>•Methods Gas chromatography–mass spectrometry (GC-MS) was used to analyse the floral scent of 78 individuals belonging to 28 different species of Gongora from two of the three major lineages sampled across the neotropical region. Multidimensional scaling and indicator value analyses were implemented to investigate the patterns of chemical diversity within and among taxonomic groups at various geographic scales. Additionally, pollinator observations were conducted on a sympatric community of Gongora orchids exhibiting distinct floral scent phenotypes.>•Key Results A total of 83 floral volatiles, mainly terpenes and aromatic compounds, were detected. Many of the identified compounds are common across diverse angiosperm families (e.g. cineole, eugenol, β-ocimene, β-pinene and terpinen-4-ol), while others are relatively rare outside euglossine bee-pollinated orchid lineages. Additionally, 29 volatiles were identified that are known to attract and elicit collection behaviour in male bees. Floral scent traits were less variable within species than between species, and the analysis revealed exceptional levels of cryptic diversity. Gongora species were divided into 15 fragrance groups based on shared compounds. Fragrance groups indicate that floral scent variation is not predicted by taxonomic rank or biogeographic region.>•Conclusions Gongora orchids emit a diverse array of scent molecules that are largely species specific, and closely related taxa exhibit qualitatively and quantitatively divergent chemical profiles. It is shown that within a community, Gongora scent chemotypes are correlated with near non-overlapping bee pollinator assemblies. The results lend support to the hypothesis that floral scent traits regulate the architecture of bee pollinator associations. Thus, Gongora provides unique opportunities to examine the interplay between floral traits and pollinator specialization in plant–pollinator mutualisms.
机译:>•背景和目的动物授粉的被子植物已经进化出多种信号传导机制来吸引传粉媒介。花香是传粉媒介吸引力的关键组成部分,它的化学性质既能调节传粉媒介的行为,又能调节植物-传粉媒介网络的形成。新热带兰花属贡戈拉(Gongora)与雄性兰花蜂(Euglossini)表现出专门的传粉媒介关联。雄蜂拜访兰花花以收集挥发性化学化合物,这些化合物存储在后腿袋中,供求偶展示时使用。因此,贡戈拉(Gongora)花香化合物同时充当信号分子和授粉媒介的奖励。此外,由于花香是血统中主要的生殖隔离屏障,因此可以假设化学性状是高度物种特异性的。进行了种内和种间花香化学变化的比较分析,以研究该属的进化模式。>•方法气相色谱-质谱法(GC-MS)来自新热带地区的三个主要血统中的两个血统的78个不同物种的Gongora的78个个体的花香。进行了多维标度和指标值分析,以调查不同地理尺度上生物分类群内和之间的化学多样性模式。此外,还对有不同花香表现型的贡戈拉兰花同伴群落进行了授粉观察。>•主要结果共检测到83种花卉挥发物,主要是萜烯和芳香族化合物。许多鉴定出的化合物在不同的被子植物科中是常见的(例如桉树脑,丁子香酚,β-烯丙烯,β-pine烯和萜品烯-4-醇),而其他在尤格拉斯丁蜜蜂授粉的兰花系中则相对罕见。此外,鉴定出29种挥发物,已知它们会吸引并引起雄蜂的采集行为。种内的花香性状的变异性比种间的变异性小,该分析表明隐性多样性水平异常高。基于共有的化合物,贡戈拉猫物种分为15个芳香族。香气类别表明,花朵的气味变化不是通过分类等级或生物地理区域来预测的。化学概况。结果表明,在一个社区内,贡戈拉(Gongora)的气味化学型与近乎不重叠的蜂传粉者群相关。结果为以下假设提供了支持:花香性状调节蜜蜂授粉媒介协会的架构。因此,贡戈拉(Gongora)提供了独特的机会来检验植物-授粉媒介互惠关系中的花性状与授粉媒介专长之间的相互作用。

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