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三种花香挥发物有助于猴面花(Mimulus)吸引不同的传粉者。

Three floral volatiles contribute to differential pollinator attraction in monkeyflowers (Mimulus).

机构信息

Department of Biology, University of Washington, Seattle, WA 98195-1800, USA.

出版信息

J Exp Biol. 2014 Feb 15;217(Pt 4):614-23. doi: 10.1242/jeb.092213. Epub 2013 Nov 6.

Abstract

Flowering plants employ a wide variety of signals, including scent, to attract the attention of pollinators. In this study we investigated the role of floral scent in mediating differential attraction between two species of monkeyflowers (Mimulus) reproductively isolated by pollinator preference. The emission rate and chemical identity of floral volatiles differ between the bumblebee-pollinated Mimulus lewisii and the hummingbird-pollinated M. cardinalis. Mimulus lewisii flowers produce an array of volatiles dominated by d-limonene, β-myrcene and E-β-ocimene. Of these three monoterpenes, M. cardinalis flowers produce only d-limonene, released at just 0.9% the rate of M. lewisii flowers. Using the Bombus vosnesenskii bumblebee, an important pollinator of M. lewisii, we conducted simultaneous gas chromatography with extracellular recordings in the bumblebee antennal lobe. Results from these experiments revealed that these three monoterpenes evoke significant neural responses, and that a synthetic mixture of the three volatiles evokes the same responses as the natural scent. Furthermore, the neural population shows enhanced responses to the M. lewisii scent over the scent of M. cardinalis. This neural response is reflected in behavior; in two-choice assays, bumblebees investigate artificial flowers scented with M. lewisii more frequently than ones scented with M. cardinalis, and in synthetic mixtures the three monoterpenes are necessary and sufficient to recapitulate responses to the natural scent of M. lewisii. In this system, floral scent alone is sufficient to elicit differential visitation by bumblebees, implying a strong role of scent in the maintenance of reproductive isolation between M. lewisii and M. cardinalis.

摘要

开花植物利用各种信号,包括气味,来吸引传粉者的注意。在这项研究中,我们调查了花香在介导两种猴面花(Mimulus)生殖隔离中差异吸引力的作用,这两种猴面花被传粉者偏好所隔离。熊蜂授粉的 Mimulus lewisii 和蜂鸟授粉的 M. cardinalis 的花朵挥发物的排放率和化学特性不同。Mimulus lewisii 花朵产生一系列以 d-柠檬烯、β-月桂烯和 E-β-罗勒烯为主的挥发性物质。在这三种单萜中,M. cardinalis 花朵仅产生 d-柠檬烯,其释放率仅为 M. lewisii 花朵的 0.9%。我们使用 Bombus vosnesenskii 熊蜂,这种熊蜂是 M. lewisii 的重要传粉者,同时进行了熊蜂触角叶的细胞外记录气相色谱分析。这些实验的结果表明,这三种单萜物质会引起显著的神经反应,而这三种挥发性物质的合成混合物能引起与自然气味相同的反应。此外,神经群对 M. lewisii 气味的反应增强,超过了对 M. cardinalis 气味的反应。这种神经反应反映在行为上;在二选一的实验中,熊蜂更频繁地调查带有 M. lewisii 气味的人工花,而不是带有 M. cardinalis 气味的花,在合成混合物中,这三种单萜物质是重现对 M. lewisii 自然气味反应的必要和充分条件。在这个系统中,花香本身足以引起熊蜂的差异访问,这表明花香在维持 M. lewisii 和 M. cardinalis 之间的生殖隔离方面起着重要作用。

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2
Pollinator-mediated evolution of floral signals.
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4
Parallel processing via a dual olfactory pathway in the honeybee.
J Neurosci. 2013 Feb 6;33(6):2443-56. doi: 10.1523/JNEUROSCI.4268-12.2013.
6
Neural basis of a pollinator's buffet: olfactory specialization and learning in Manduca sexta.
Science. 2013 Jan 11;339(6116):200-4. doi: 10.1126/science.1225483. Epub 2012 Dec 6.
7
Phenotypic selection to increase floral scent emission, but not flower size or colour in bee-pollinated Penstemon digitalis.
New Phytol. 2012 Aug;195(3):667-675. doi: 10.1111/j.1469-8137.2012.04188.x. Epub 2012 May 30.
8
Floral and vegetative cues in oil-secreting and non-oil-secreting Lysimachia species.
Ann Bot. 2012 Jul;110(1):125-38. doi: 10.1093/aob/mcs101. Epub 2012 May 25.
9
Strong phylogenetic effects on floral scent variation of oil-secreting orchids in South Africa.
Am J Bot. 2011 Oct;98(10):1663-79. doi: 10.3732/ajb.1100141. Epub 2011 Sep 29.
10
Spiking patterns and their functional implications in the antennal lobe of the tobacco hornworm Manduca sexta.
PLoS One. 2011;6(8):e23382. doi: 10.1371/journal.pone.0023382. Epub 2011 Aug 29.

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