TY - JOUR
T1 - A Deceptive Pollination System Targeting Drosophilids through Olfactory Mimicry of Yeast
AU - Stökl, Johannes
AU - Strutz, Antonia
AU - Dafni, Amots
AU - Svatos, Ales
AU - Doubsky, Jan
AU - Knaden, Markus
AU - Sachse, Silke
AU - Stensmyr, Marcus C.
AU - Hansson, Bill
PY - 2010
Y1 - 2010
N2 - In deceptive pollination, insects are bamboozled into performing nonrewarded pollination. A prerequisite for the evolutionary stability in such systems is that the plants manage to generate a perfect sensory impression of a desirable object in the insect nervous system [1]. The study of these plants can provide important insights into sensory preference of their visiting insects. Here, we present the first description of a deceptive pollination system that specifically targets drosophilid flies. We show that the examined plant (Arum palaestinum) accomplishes its deception through olfactory mimicry of fermentation, a strategy that represents a novel pollination syndrome. The lily odor is composed of volatiles characteristic of yeast, and produces in Drosophila melanogaster an antennal detection pattern similar to that elicited by a range of fermentation products. By functional imaging, we show that the lily odors target a specific subset of odorant receptors (ORs), which include the most conserved OR genes in the drosophilid olfactome. Furthermore, seven of eight visiting drosophilid species show a congruent olfactory response pattern to the lily, in spite of comprising species pairs separated by similar to 40 million years [2], showing that the lily targets a basal function of the fly nose, shared by species with similar ecological preference.
AB - In deceptive pollination, insects are bamboozled into performing nonrewarded pollination. A prerequisite for the evolutionary stability in such systems is that the plants manage to generate a perfect sensory impression of a desirable object in the insect nervous system [1]. The study of these plants can provide important insights into sensory preference of their visiting insects. Here, we present the first description of a deceptive pollination system that specifically targets drosophilid flies. We show that the examined plant (Arum palaestinum) accomplishes its deception through olfactory mimicry of fermentation, a strategy that represents a novel pollination syndrome. The lily odor is composed of volatiles characteristic of yeast, and produces in Drosophila melanogaster an antennal detection pattern similar to that elicited by a range of fermentation products. By functional imaging, we show that the lily odors target a specific subset of odorant receptors (ORs), which include the most conserved OR genes in the drosophilid olfactome. Furthermore, seven of eight visiting drosophilid species show a congruent olfactory response pattern to the lily, in spite of comprising species pairs separated by similar to 40 million years [2], showing that the lily targets a basal function of the fly nose, shared by species with similar ecological preference.
UR - https://res.slu.se/id/publ/47808
U2 - 10.1016/j.cub.2010.09.033
DO - 10.1016/j.cub.2010.09.033
M3 - Journal article
C2 - 20933425
SN - 0960-9822
VL - 20
SP - 1846
EP - 1852
JO - Current Biology
JF - Current Biology
IS - 20
ER -