The floral illusion: A parasitic beetle mimics the scent of flowers to attract bees
Alam, R. M.; Kessler, D.; Vogel, H.; Luck, K.; David, A.; Kunert, M.; Kaltenpoth, M.; O'Connor, S. E.; Kollner, T. G.
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Animals are not known to biosynthesize floral signals to manipulate pollinators, although such mimicry could profoundly shape plant-pollinator interactions. Larvae of the poisonous European blister beetle Meloe proscarabaeus parasitize multiple solitary bee species, yet the mechanism enabling host attraction has remained unresolved. Here we show that these larvae lure bees by emitting a bouquet of volatile compounds that closely resembles floral scent. Chemical analyses reveal a complex blend of monoterpenoids derived from (S)-linalool, a ubiquitous floral volatile. Behavioral assays demonstrate that these compounds function as floral cues, eliciting attraction in bees. Transcriptomic and functional analyses identify cytochrome P450 enzymes that oxidize (S)-linalool, demonstrating that larvae biosynthesize these plant-like volatiles de novo. Together, these findings broaden the scope of interkingdom chemical mimicry and uncover a striking form of sensory deception in which an insect chemically assumes the signal identity of a flower, revealing that animals can evolve biosynthetic pathways to exploit plant-pollinator communication.
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