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- W2049720565 abstract "Summary Many plant species attract insect pollinators through chemical mimicry of their oviposition sites, often detaining them in a trap chamber that ensures pollen transfer. These plant mimics are considered to be unspecialized at the pollinator species level, yet field observations of a mycoheterotrophic rainforest orchid ( G astrodia similis ), which emits an odour reminiscent of rotting fruit, indicate that it is pollinated by a single drosophilid fly species ( S captodrosophila bangi ). We investigated the roles of floral volatiles and the dimensions of the trap chamber in enforcing this specialization, using gas chromatography‐mass spectrometry analyses, bioassays and scanning electron microscopy. We showed that G . similis flowers predominantly emit three fatty‐acid esters (ethyl acetate, ethyl isobutyrate and methyl isobutyrate) that were shown in experiments to attract only S captodrosophila flies. We additionally showed that the trap chamber, which flies enter into via a touch‐sensitive ‘trapdoor’, closely matches the body size of the pollinator species S. bangi and plays a key role in pollen transfer. Our study demonstrates that specialization in oviposition site mimicry is due primarily to volatile chemistry and is reflected in the dimensions of the trapping apparatus. It also indicates that mycoheterotrophic plants can be specialized both on mycorrhizal fungi and insect pollinators." @default.
- W2049720565 created "2016-06-24" @default.
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- W2049720565 date "2015-02-20" @default.
- W2049720565 modified "2023-10-08" @default.
- W2049720565 title "Chemical and morphological filters in a specialized floral mimicry system" @default.
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- W2049720565 doi "https://doi.org/10.1111/nph.13350" @default.
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