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金小蜂类传粉者(瘿蚊科:瘿蚊亚科)对安祖花(天南星科)的化学吸引。

Chemical Attraction of Gall Midge Pollinators (Cecidomyiidae: Cecidomyiinae) to Anthurium acutangulum (Araceae).

机构信息

Department of Botany and Biodiversity Research, University of Vienna, Vienna, Austria.

Institute of Organic Chemistry, University of Hamburg, Hamburg, Germany.

出版信息

J Chem Ecol. 2022 Mar;48(3):263-269. doi: 10.1007/s10886-022-01349-3. Epub 2022 Mar 8.

Abstract

Flowering plants often use chemical signals to attract their pollinators, and compounds that elicit attraction are known for several groups of pollinators. For other pollinators such as gall midges, however, compounds responsible for their attraction to flowers are largely unknown. Here, we describe the pollination biology of Anthurium acutangulum, a Neotropical aroid species found to be attractive to gall midges. We collected and analyzed its floral scent by dynamic headspace collections and gas chromatography coupled to mass spectrometry, and identified compounds responsible for pollinator attraction. The inflorescences were almost exclusively visited by gall midges (females; Cecidomyiidae: Cecidomyiinae) and released a strong scent reminiscent of freshly cut cucumber, mainly (5S,7S)-trans-conophthorin, (E2,Z6)-2,6-nonadienal, and cis-conophthorin. Behavioral assays with the two most abundant compounds identified (E2,Z6)-2,6-nonadienal as being highly attractive to the female gall midge pollinators, whereas (5S,7S)-trans-conophthorin was not attractive. Overall, we introduce a new specialized gall midge pollination system and identify the chemical mediating communication between the pollinators and their host plants.

摘要

开花植物通常使用化学信号来吸引传粉者,而引发吸引力的化合物已被证实存在于几个传粉者群体中。然而,对于其他传粉者,如瘿蚊,负责吸引它们的花朵化合物在很大程度上是未知的。在这里,我们描述了安古兰属植物 Anthurium acutangulum 的传粉生物学,这是一种新热带天南星科植物,被发现对瘿蚊具有吸引力。我们通过动态顶空收集和气相色谱-质谱联用收集和分析了它的花香,并确定了负责吸引传粉者的化合物。花序几乎完全被瘿蚊(雌性;瘿蚊科:瘿蚊亚科)访问,并释放出强烈的气味,类似于新鲜切黄瓜的气味,主要由(5S,7S)-反-金合欢醇、(E2,Z6)-2,6-壬二烯醛和顺-金合欢醇组成。对两种最丰富的化合物(E2,Z6)-2,6-壬二烯醛和(5S,7S)-反-金合欢醇进行的行为测定表明,前者对雌性瘿蚊传粉者具有高度吸引力,而后者则没有吸引力。总的来说,我们引入了一个新的专门化的瘿蚊传粉系统,并确定了传粉者与其宿主植物之间的化学通讯中介。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13cf/8934759/d6fc9eb16d60/10886_2022_1349_Fig1_HTML.jpg

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