bioRxiv Science⌕ Search

Biology subjects

Rutowski, R. L.

Publications and source records attributed to Rutowski, R. L..

2 recordsLinked to original sources

Male behavior in a swallowtail butterfly (Battus philenor) ensures directional iridescent sexual signal is visible to females during courtship

Iridescent colors in animals may vary with the arrangement of the observer and the light source relative to the animal. When these highly directional colors are used as signals, there may be transmission problems for senders in that the perception of the signal by intended receivers can be greatly affected by the spatial arrangement of the sender, receiver, and sources of contributing light. One potential solution to this problem is for senders to behave in a manner that arranges the positions of sender, light source, and receiver to enhance signal perception by the receiver. We tested this idea by describing the structure of courtship behavior of males of the Pipevine Swallowtail (Battus philenor) butterfly and analyzing its consequences for the female detection of the males iridescent sexual signal which is used in mate choice by females. During courtship, males perform a swoop maneuver that brings their dorsal hindwing from below to directly in front of the female. Several swoops in rapid succession occur in aerial courtships that lead to copulation. We measured under solar radiation the radiance of the males dorsal hindwing as seen by the female during a swoop. Regardless of how the males swoop path is oriented relative to the sun, there will be a brief, bright, and saturated flash of blue visible to the female. Our results support the conclusion that male swoops enhance the visibility of the males iridescent color signal to the female during courtship.

animal behavior and cognition↗

Color, activity period, and eye structure in four lineages of ants: pale, nocturnal species have evolved larger eyes and larger facets than their dark, diurnal congeners

The eyes of insects display an incredible diversity of adaptations to enhance vision across the gamut of light levels that they experience. One commonly studied contrast is the difference in eye structure between nocturnal and diurnal species, with nocturnal species typically having features that enhance eye sensitivity such as larger eyes, larger eye facets, and larger ocelli. In this study, we compared eye structure between workers of closely related nocturnal and diurnal above ground foraging ant species (family Formicidae) in four genera (Myrmecocystus, Aphaenogaster, Temnothorax, Veromessor). In all four genera, nocturnal species tend to have little cuticular pigment (pale), while diurnal species are fully pigmented (dark), hence we could use cuticle coloration as a surrogate for activity pattern. Across three genera (Myrmecocystus, Aphaenogaster, Temnothorax), pale species, as expected for nocturnally active animals had larger eyes, larger facet diameters, and larger visual spans compared to their dark, more day active congeners. This same pattern occurred for one pale species of Veromessor, but not the other. There were no consistent differences between nocturnal and diurnal species in interommatidial angles and eye parameters both within and among genera. Hence, the evolution of eye features that enhance sensitivity in low light levels do not appear to have consistent correlated effects on features related to visual acuity. A survey across several additional ant genera found numerous other pale species with enlarged eyes, suggesting these traits evolved multiple times within and across genera. We also compared size of the anterior ocellus in workers of pale versus dark species of Myrmecocystus. In species with larger workers, the anterior ocellus was smaller in pale than in dark species, but this difference mostly disappeared for species with smaller workers. Presence of the anterior ocellus also was size-dependent in the two largest pale species.

evolutionary biology↗