Search PubMed⌕ Search

Biomedical subjects

C Wedekind

Publications and source records attributed to C Wedekind.

42 records · Page 3Linked to original sources

MHC-dependent mate preferences in humans.

One substantial benefit of sexual reproduction could be that it allows animals (including humans) to react rapidly to a continuously changing environmental selection pressure such as coevolving parasites. This counteraction would be most efficient if the females were able to provide their progeny with certain allele combinations for loci which may be crucial in the parasite-host arms race, for example the MHC (major histocompatibility complex). Here we show that the MHC influences both body odours and body odour preferences in humans, and that the women's preferences depend on their hormonal status. Female and male students were typed for their HLA-A, -B and -DR. Each male student wore a T-shirt for two consecutive nights. The next day, each female student was asked to rate the odours of six T-shirts. They scored male body odours as more pleasant when they differed from the men in their MHC than when they were more similar. This difference in odour assessment was reversed when the women rating the odours were taking oral contraceptives. Furthermore, the odours of MHC-dissimilar men remind the test women more often of their own actual or former mates than do the odours of MHC-similar men. This suggests that the MHC or linked genes influence human mate choice today.

Adult↗

Mate choice and maternal selection for specific parasite resistances before; during and after fertilization.

As Hamilton & Zuk pointed out, some loci may be of special importance for sexual selection because they play a crucial role in the co-evolution between parasites and hosts. In previous work I have tried to extend Hamilton & Zuk's parasite hypothesis for sexual selection, partly by including findings of immunologists and endocrinologists: in some species, handicapping signals may specifically reveal the current needs of the immune system which depends on the host's susceptibilities to different parasites. In other species, depending on the constellation of some key variables, non-handicapping signals could directly reveal the identity of resistance genes. Despite the general conflict of interests between the sexes, sexual selection may, in these cases, lead to signallers (i.e. mostly the males) focusing on improving their offspring's survival chances instead of trying to maximize their number. Males achieve this by allowing choosy females to optimize costs and benefits of each resistance. Both parts of the extended parasite hypothesis suggest that female choice for specific heritable matequalities aim to optimize the resistance genetics of the unfertilized eggs. However, intersexual selection could go further than just choosing a mate. Here, I list the possible selection levels at which the mother and/or her ova could select for specific sperm haplotypes before, during and after the formation of the zygote. For many of these possible selection levels, evidence suggests that selection after mating might favour heterozygosity or even certain specific allele combinations at loci which are involved in the parasite-host co-evolution (e.g. the major histocompatibility complex or the transferrin locus).

Animals↗

Handicaps not obligatory in sexual selection for resistance genes.

In previous models of parasite-driven sexual selection, the signals that reveal parasite resistances and that are used in mate choice should be costly to be reliable ("Handicap Principle"). However, sometimes parameter constellations could exist that allow for cheap signals directly revealing the identity of resistance genes. Despite the general conflict of interests between the sexes, sexual selection may, in these cases, have led males to focus on improving their offspring's survival chances instead of trying to get a maximum number of offspring. Males may achieve this by allowing choosy females to optimize costs and benefits of each resistance in the progeny. Multiple signals (such as odours) may serve to encode the necessary information about the identity of resistance genes. As an example, the connection between the major histocompatibility complex and odour-based mate choice in mice could be explained by this hypothesis.

Animals↗