This is the author accepted manuscript. The final version is available from Wiley via the DOI in this record The rapid evolutionary divergence of male genital structures under sexual selection is well documented. However, variation in female genital traits and the potential for sexual conflict to drive the coevolution between male and female traits has only recently received attention. In many lepidopterans females possess genital teeth (collectively, signa). Comparative studies suggest these teeth, involved in the deflation of spermatophores, may have coevolved with male spermatophore thickness via sexually antagonistic coevolution in a contest over the rate of deflation of spermatophores within the reproductive tract. We tested the hypoth...
Genitalia are conspicuously variable, even in closely related taxa that are otherwise morphologicall...
The genitalia of internally fertilizing taxa represent a striking example of rapid morphological evo...
Sexual selection can drive rapid evolutionary change in reproductive behaviour, morphology and physi...
The rapid evolutionary divergence of male genital structures under sexual selection is well document...
The rapid evolutionary divergence of male genital structures under sexual selection is well document...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
Sexual coevolution is considered responsible for the evolution of many male genital traits, but its ...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
Male genitals are highly divergent in animals with internal fertilization. Most studies attempting t...
Despite the key functions of the genitalia in sexual interactions and fertilization, the role of sex...
Signa are sclerotized structures located on the inner wall of the corpus bursa of female Lepidoptera...
Conflict between sexes occurs as a result of asymmetric reproductive trade-offs during mating. When ...
Abstract genital characteristics have peculiar morphological patterns. They show great divergence b...
Male and female genital morphology varies widely across many taxa, and even among populations. Disen...
Sexual conflict is a powerful evolutionary force, arising due to the differing reproductive interest...
Genitalia are conspicuously variable, even in closely related taxa that are otherwise morphologicall...
The genitalia of internally fertilizing taxa represent a striking example of rapid morphological evo...
Sexual selection can drive rapid evolutionary change in reproductive behaviour, morphology and physi...
The rapid evolutionary divergence of male genital structures under sexual selection is well document...
The rapid evolutionary divergence of male genital structures under sexual selection is well document...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
Sexual coevolution is considered responsible for the evolution of many male genital traits, but its ...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
Male genitals are highly divergent in animals with internal fertilization. Most studies attempting t...
Despite the key functions of the genitalia in sexual interactions and fertilization, the role of sex...
Signa are sclerotized structures located on the inner wall of the corpus bursa of female Lepidoptera...
Conflict between sexes occurs as a result of asymmetric reproductive trade-offs during mating. When ...
Abstract genital characteristics have peculiar morphological patterns. They show great divergence b...
Male and female genital morphology varies widely across many taxa, and even among populations. Disen...
Sexual conflict is a powerful evolutionary force, arising due to the differing reproductive interest...
Genitalia are conspicuously variable, even in closely related taxa that are otherwise morphologicall...
The genitalia of internally fertilizing taxa represent a striking example of rapid morphological evo...
Sexual selection can drive rapid evolutionary change in reproductive behaviour, morphology and physi...