Nakazato Yugo, Otaki Joji M
The BCPH Unit of Molecular Physiology, Department of Chemistry, Biology and Marine Science, Faculty of Science, University of the Ryukyus, Nishihara 903-0213, Okinawa, Japan.
Insects. 2024 Jul 16;15(7):535. doi: 10.3390/insects15070535.
Eyespot foci on butterfly wings function as organizers of eyespot color patterns during development. Despite their importance, focal structures have not been examined in detail. Here, we microscopically examined scales, sockets, and the wing membrane in the butterfly eyespot foci of both expanded and unexpanded wings using the Blue Pansy butterfly . Images from a high-resolution light microscope revealed that, although not always, eyespot foci had scales with disordered planar polarity. Scanning electron microscopy (SEM) images after scale removal revealed that the sockets were irregularly positioned and that the wing membrane was physically distorted as if the focal site were mechanically squeezed from the surroundings. Focal areas without eyespots also had socket array irregularities, but less frequently and less severely. Physical damage in the background area induced ectopic patterns with socket array irregularities and wing membrane distortions, similar to natural eyespot foci. These results suggest that either the process of determining an eyespot focus or the function of an eyespot organizer may be associated with wing-wide mechanics that physically disrupt socket cells, scale cells, and the wing membrane, supporting the physical distortion hypothesis of the induction model for color pattern determination in butterfly wings.
蝴蝶翅膀上的眼斑中心在发育过程中充当眼斑颜色图案的组织者。尽管它们很重要,但尚未对这些焦点结构进行详细研究。在这里,我们使用蓝堇蛱蝶对展开和未展开翅膀的蝴蝶眼斑中心的鳞片、眼斑窝和翅膜进行了显微镜检查。高分辨率光学显微镜拍摄的图像显示,虽然并非总是如此,但眼斑中心的鳞片平面极性紊乱。去除鳞片后的扫描电子显微镜(SEM)图像显示,眼斑窝位置不规则,翅膜出现物理扭曲,就好像焦点部位受到周围环境的机械挤压一样。没有眼斑的焦点区域也存在眼斑窝排列不规则的情况,但频率较低且程度较轻。背景区域的物理损伤会诱导出具有眼斑窝排列不规则和翅膜扭曲的异位图案,类似于自然眼斑中心。这些结果表明,确定眼斑中心的过程或眼斑组织者的功能可能与在整个翅膀上对眼斑窝细胞、鳞片细胞和翅膜造成物理破坏的力学机制有关,这支持了蝴蝶翅膀颜色图案确定诱导模型的物理扭曲假说。