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首页> 外文期刊>South African Journal of Botany >Variation in scent emission among floral parts and inflorescence developmental stages in beetle-pollinated Protea species (Proteaceae). (Special Issue: Chemical diversity and biological functions of plant volatiles.)
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Variation in scent emission among floral parts and inflorescence developmental stages in beetle-pollinated Protea species (Proteaceae). (Special Issue: Chemical diversity and biological functions of plant volatiles.)

机译:甲虫授粉的 Protea 物种(Proteaceae)花部之间的气味释放和花序发育阶段的变化。 (特刊:植物挥发物的化学多样性和生物学功能。)

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Floral fragrances are an important component for pollinator attraction in beetle-pollinated flowers. Several genera in the Proteaceae contain beetle-pollinated species. However, there is no information on the floral scent chemistry of beetle-pollinated members of the family. In this paper we report on the spatial variation and differences between developmental stages in emission of inflorescence (flowerhead) volatiles of four South African Protea species (P. caffra, P. dracomontana, P. simplex, and P. welwitschii) that are pollinated by cetoniine beetles. The scents from different inflorescence parts (bracts, perianth, styles, and nectar) and from successive anthesis stages of whole inflorescences were sampled using dynamic headspace collection and identified using GC-MS. Although the four species shared many scent compounds, possibly reflecting their close phylogenetic relationships and common pollinators, they showed significant differences in overall scent composition due to various species-specific compounds, such as the unique tiglate esters found in the scent of P. welwitschii. The strongest emissions and largest number of volatiles, especially monoterpenes, were from inflorescences at full pollen dehiscence. Senescing inflorescences of two species and nectars of all species emitted proportionally high amounts of acetoin (3-hydroxy-2-butanone) and aromatic alcohols, typical fermentation products. As a consequence, the scent composition of nectar was much more similar among species than was the scent composition of other parts of the inflorescence. These results illustrate how the blends of compounds that make up the overall floral scent are a dynamic consequence of emissions from various plant partsDigital Object Identifier http://dx.doi.org/10.1016/j.sajb.2010.08.008
机译:花香是甲虫授粉花中吸引传粉者的重要成分。 Proteaceae中的几个属包含甲虫授粉的物种。但是,没有关于甲虫授粉的成员的花香化学信息。在本文中,我们报告了四种南非普罗梯亚种(i.P. caffra ,)的花序(头花)挥发物释放的空间变化和发育阶段之间的差异。 P. dracomontana , P。simplex 和 P。welwitschii )均被cetoniine甲虫授粉。使用动态顶空收集对来自不同花序部分(br片,花被,花蜜和花蜜)以及整个花序连续花期的气味进行采样,并使用GC-MS进行鉴定。尽管这四个物种共享许多气味化合物,可能反映了它们密切的系统发育关系和常见的传粉媒介,但由于各种物种特异性化合物,例如在 P气味中发现的独特的tiglate酯,它们在总体气味组成上显示出显着差异。 。 welwitschii 。最强的排放物和最大的挥发物(尤其是单萜类)来自花粉充分开裂后的花序。两种物种的感性花序和所有物种的花蜜发出的比例成比例的大量乙酰丙酮(3-羟基-2-丁酮)和芳香醇(典型的发酵产物)。结果,花蜜的花香成分在花序间比花序其他部分的花香成分更加相似。这些结果说明了构成整体花香的化合物的混合物如何是植物各个部位排放物的动态结果数字对象标识符http://dx.doi.org/10.1016/j.sajb.2010.08.008

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