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在丝蚕 Antheraea assamensis 中具有反射紫外线的翅鳞:其生物物理意义。

UV-reflecting wing scales in the silk moth Antheraea assamensis: its biophysical implications.

机构信息

Electron Microscope Division, SAIF, North Eastern Hill University, Shillong 793003, India.

出版信息

Microsc Res Tech. 2011 Jan;74(1):28-35. doi: 10.1002/jemt.20869.

Abstract

Scanning electron microcopy of the wing scales from some specific locations in the silk moth, Antheraea assamensis, revealed the presence of 50-60-nm-thick microridges and 80-nm-thick air spaces between them. The principle of optics suggests that when the measured average thickness of microridges or lamellae is about 50-60 nm, that of the air-space between them is about 80-82 nm, then due to the known refractive index of air (1.0) and the infrared refractive index of lamellar cuticle (1.60), the lamellae (microridges) and the intervening lamellar air spaces will have similar optical thickness. A common optical thickness for the two types of layers causes the microridge structures to function in the fashion of a quarter wavelength interference filter and to reflect UV light. Behavioral studies under the natural conditions and short experimental exposure of the moths to artificial UV light suggests that coupling behavior of the moth is governed to a significant extent by these UV-reflecting wing scales. The importance of the study in overcoming a major problem of low autocoupling efficiency of moths in the Muga Silk Industry is discussed with the help of relevant literature.

摘要

对丝蚕蛾(Antheraea assamensis)翅膀鳞片的某些特定位置进行扫描电子显微镜观察,发现存在 50-60nm 厚的微脊和 80nm 厚的空气间隙。光学原理表明,当测量得到的微脊或薄片的平均厚度约为 50-60nm 时,它们之间的空气间隙的厚度约为 80-82nm,那么由于已知空气的折射率(1.0)和片状表皮的红外折射率(1.60),薄片(微脊)和间隔的薄片空气间隙将具有相似的光学厚度。两种类型的层的共同光学厚度使得微脊结构以四分之一波长干涉滤波器的方式起作用,并反射紫外线。在自然条件下进行的行为研究以及对蛾类进行的短期人工紫外线暴露实验表明,这些具有紫外线反射能力的翅膀鳞片在很大程度上控制着蛾类的耦合行为。本文借助相关文献讨论了这一研究对于克服在木薯蚕丝绸工业中蛾类的低自耦合效率这一主要问题的重要性。

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