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中枢和外周蜕皮激素释放对烟草天蛾蜕皮行为控制中的作用。

The roles of central and peripheral eclosion hormone release in the control of ecdysis behavior in Manduca sexta.

作者信息

Hewes R S, Truman J W

机构信息

Department of Zoology, University of Washington, Seattle 98195.

出版信息

J Comp Physiol A. 1991 Jun;168(6):697-707. doi: 10.1007/BF00224359.

Abstract
  1. Ecdysis, a behavior by which insects shed the old cuticle at the culmination of each molt, is triggered by a unique peptide hormone, eclosion hormone (EH). In pupal Manduca sexta, EH is released into the hemolymph just prior to ecdysis, and circulating hormone is sufficient to elicit this behavior. 2. Removal of the proctodeal nerves in prepupal animals eliminated the appearance of blood-borne EH, but ecdysis behavior occurred on schedule. Therefore, circulating EH is not necessary for the triggering of ecdysis. 3. In contrast, a set of dermal glands failed to show their expected bout of secretion after proctodeal nerve removal. Injection of exogenous EH rescued this secretion. Thus, circulating EH appears necessary for action on peripheral but not central targets. 4. A major reduction in EH immunostaining is seen in the proctodeal nerves just preceding ecdysis; this coincides with a greater than 90% reduction in extractable EH from this structure and the appearance of circulating EH. A similar, concomitant reduction was seen in central EH cell processes, suggesting release of peptide within the CNS. 5. Antidromic stimulation of the proctodeal nerve stumps following proctodeal nerve removal triggered precocious ecdysis. This result further supports the conclusion that centrally released EH is sufficient to trigger the motor program.
摘要
  1. 蜕皮是昆虫在每次蜕皮末期蜕去旧表皮的一种行为,由一种独特的肽类激素——羽化激素(EH)触发。在蛹期的烟草天蛾中,EH恰好在蜕皮前释放到血淋巴中,循环激素足以引发这种行为。2. 在预蛹期动物中切除直肠神经消除了血源性EH的出现,但蜕皮行为仍按时发生。因此,循环中的EH对于触发蜕皮不是必需的。3. 相比之下,一组真皮腺在切除直肠神经后未能表现出预期的分泌发作。注射外源性EH挽救了这种分泌。因此,循环中的EH似乎对于作用于外周而非中枢靶点是必需的。4. 在即将蜕皮前,在直肠神经中观察到EH免疫染色大幅减少;这与该结构中可提取的EH减少90%以上以及循环中EH的出现相吻合。在中枢EH细胞突起中也观察到类似的伴随减少,表明肽在中枢神经系统内释放。5. 在切除直肠神经后对直肠神经残端进行逆向刺激引发了早熟蜕皮。这一结果进一步支持了中枢释放的EH足以触发运动程序的结论。

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