Search bioRxiv⌕ Search

Biology subjects

Wirtgen, A.

Publications and source records attributed to Wirtgen, A..

2 recordsLinked to original sources

Recognition of an appropriate mating partner using cuticular hydrocarbons in a species with an extreme intra-sexual dimorphism

Attracting a mate at the right time is critical for many species that reproduce sexually. In insects, short-range communication between potential mates is often mediated by cuticular hydrocarbons (CHCs), which cover most of the insect cuticle. Although the CHC profiles of many insects have been studied, we know little about what aspects of a CHC profile cause changes in mate attractiveness over the lifetime of an individual. We addressed this question by studying the mason wasp Odynerus spinipes, whose females exhibit age-related quantitative changes in their CHC profile composition. First, we created an ethogram of the male mating behavior. We knew from preliminary investigations that males do not attempt to mate with recently eclosed adult females. By coating wasp dummies with different CHC extracts, we were able to show that the CHC profiles of 3-day-old females are indeed more attractive to males than those of 0-day-old females. The increased attractiveness of 3-day-old females compared to younger females was negatively correlated with the relative abundance of methyl-branched alkanes in the CHC profile of the females. These results, and the fact that the CHC profile of males is characterized by a high relative abundance of methyl-branched alkanes throughout the adult wasp lifetime, suggest that in O. spinipes, methyl-branched alkanes may act as anti-aphrodisiacs that reduce the harassment of females by males before the females are ready to mate.

ecology↗

Cuticular Hydrocarbons on Old Museum Specimens of the Spiny Mason Wasp, Odynerus spinipes, (Hymenoptera: Vespidae: Eumeninae) Shed Light on the Distribution and on Regional Frequencies of Distinct Chemotypes

The mason wasp Odynerus spinipes shows an exceptional case of intrasexual CHC dimorphism. Females of this species express one of two cuticular hydrocarbon (CHC) profiles (chemotypes) that differ qualitatively and quantitatively from each other. The ratio of the two chemotypes was previously shown to be close to 1:1 at three sites in Southern Germany, which might not be representative given the Palearctic distribution of the species. To infer the frequency of the two chemotypes across the entire distributional range of the species, we analyzed with GC-MS the CHC profiles of 1,042 dry-mounted specimens stored in private and museum collections. We complemented our sampling by including 324 samples collected and preserved specifically for studying their CHCs. We were capable of reliably identifying the chemotypes in 91% of dry-mounted samples, some of which collected almost 200 years ago. We found both chemotypes to occur in the Far East, the presumed glacial refuge of the species, and their frequency to differ considerably between sites and geographic regions. The geographic structure in the chemotype frequencies could be the result of differential selection regimes and/or different dispersal routes during the colonization of the Western Palearctic. The presented data pave the route for disentangling these factors by providing information where to geographically sample O. spinipes for population genetic analyses. They also form the much-needed basis for future studies aiming to understand the evolutionary and geographic origin as well as the genetics of the astounding CHC dimorphism that O. spinipes females exhibit.

ecology↗