| Publication Type: | Journal Article |
| Year of Publication: | 2026 |
| Authors: | K. Sakagami, Hamaguchi, K., Terada, K., Takami, Y., Sigiura, S. |
| Journal: | Entomological Science |
| Volume: | 29 |
| Start Page: | e70023 |
| Pagination: | e70023 |
| Keywords: | BODY SIZE, LANGIINAE, MACROGLOSSINAE, MICRO-CT, MUSCULATURE, NOTONAGEMIA, PROBOSCIS, SMERINTHINAE, SPHINGIDAE, SPHINGINAE, WING LENGTH |
| Abstract: | "In Lepidoptera, extremely long adult proboscises have evolved in several lineages, enabling access to nectar deep within long-tubed flowers. However, such elongation likely incurs biomechanical costs during nectar uptake due to increased fluid resistance. To extract nectar, adult lepidopterans are thought to use a suction pump within the head capsule, which generates negative pressure through the contraction of dilator muscles attached to the pump chamber. The development of these muscles may help compensate for the functional costs associated with proboscis elongation, but the relationship between dilator muscle volume and other morphological traits remains poorly understood. In this study, we examined 35 species of hawkmoths (Sphingidae: Macroglossinae, 19 species; Smerinthinae, 8 species; Sphinginae, 7 species; and Langiinae, 1 species) collected in Japan, encompassing a wide range of proboscis lengths (3.2–75.9 mm). Using X-ray micro-computed tomography (micro-CT), we quantified the volume of the dilator muscles associated." |
| DOI: | 10.1111/ens.70023 |