Kammer A E, Rheuben M B
J Exp Biol. 1976 Aug;65(1):65-84. doi: 10.1242/jeb.65.1.65.
Muscle potentials were recorded extracellularly from developing pupae and adults of the saturniid moths Antheraea polyphemus and A. pernyi and the sphingid moth Manduca sexta. During the week prior to the terminal ecdysis, developing moths still enclosed within the pupal cuticle produced motor patterns similar to those recorded from adults during flight and shivering. The pupal patterns had a longer cycle time and were more variable than the adult motor patterns. Characteristic inter-family differences in adult motor patterns were apparent in pupal motor patterns. Development of motor patterns was followed over several days by observing individuals with chronically implanted leads. Early in the pupal period potentials were small and infrequent. The amount of activity gradually increased and became more patterned. As development proceeded adult patterns were produced for increasing lengths of time, although the patterns changed quickly and spontaneously. Restricting the wing movements of A. polyphemus adults increased the cycle time, increased the number of spikes per burst in muscles opposing the restraint, and did not alter the interspike interval within a burst. The flight patterns produced by pharate moths, in which the wings are also immobile, also have a longer cycle time than that of adult flight, but the number of spikes per burst the same and the interspike interval is longer than in adult flight. These observations suggest that the differences between pupal and adult patterns are not necessarily due to the confinement of the wings by the pupal cuticle.
从天蚕蛾多音大蚕蛾和柞蚕以及天蛾烟草天蛾发育中的蛹和成虫的肌肉中进行细胞外电位记录。在最后一次蜕皮前的一周内,仍被包裹在蛹皮内的发育中的蛾子产生的运动模式与成虫在飞行和颤抖时记录到的相似。蛹期的运动模式周期时间更长,且比成虫的运动模式更具变异性。成虫运动模式中典型的科间差异在蛹期运动模式中也很明显。通过观察长期植入电极的个体,连续几天跟踪运动模式的发育情况。在蛹期早期,电位较小且不频繁。活动量逐渐增加并变得更有规律。随着发育的进行,成虫模式出现的时间越来越长,尽管这些模式变化迅速且自发。限制多音大蚕蛾成虫的翅膀运动增加了周期时间,增加了对抗限制的肌肉中每个爆发的尖峰数量,并且没有改变爆发内的峰间间隔。即将羽化的蛾子产生的飞行模式(其翅膀也不能活动)的周期时间也比成虫飞行的长,但每个爆发的尖峰数量相同,且峰间间隔比成虫飞行时更长。这些观察结果表明,蛹期和成虫期模式之间的差异不一定是由于蛹皮对翅膀的限制。