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烟草天蛾(Manduca sexta)幼虫-蛹转变过程中激素介导的肌肉和运动神经元重编程。

Hormonally mediated reprogramming of muscles and motoneurones during the larval-pupal transformation of the tobacco hornworm, Manduca sexta.

作者信息

Weeks J C, Truman J W

出版信息

J Exp Biol. 1986 Sep;125:1-13. doi: 10.1242/jeb.125.1.1.

Abstract

The larval-pupal transformation of Manduca sexta results from an exposure to ecdysteroids in the absence of juvenile hormone (the commitment pulse), followed by a larger exposure to ecdysteroids (the prepupal peak) with a reappearance of juvenile hormone (JH). The prepupal ecdysteroid peak triggers the degeneration of abdominal muscles, and the dendritic regression and death of identified motoneurones. The present experiments examined the role of the commitment pulse in the larval-pupal reprogramming of these cells. The commitment pulse did not overtly affect the muscles and motoneurones, but it switched their hormonal responsiveness; before the commitment pulse, exposure to ecdysteroids in the presence of JH had no effect on the larval cells, whereas after the commitment pulse the same treatment caused regression and death. Thus, JH lost its ability to prevent pupal development. Furthermore, treatment with ecdysteroids in the absence of JH before the commitment pulse promoted pupal development much less effectively than did the same treatment given after the commitment pulse, indicating that the commitment pulse facilitates the subsequent responsiveness to ecdysteroids. Thus, the commitment pulse covertly causes both qualitative and quantitative changes in the hormonal sensitivity of the larval muscles and motoneurones.

摘要

烟草天蛾幼虫向蛹的转变源于在没有保幼激素(决定性脉冲)的情况下接触蜕皮甾体,随后在保幼激素再次出现时更大剂量地接触蜕皮甾体(预蛹峰)。预蛹蜕皮甾体峰引发腹部肌肉退化以及特定运动神经元的树突回缩和死亡。本实验研究了决定性脉冲在这些细胞幼虫 - 蛹重编程中的作用。决定性脉冲并未明显影响肌肉和运动神经元,但它改变了它们的激素反应性;在决定性脉冲之前,在保幼激素存在的情况下接触蜕皮甾体对幼虫细胞没有影响,而在决定性脉冲之后,相同处理会导致回缩和死亡。因此,保幼激素失去了阻止蛹发育的能力。此外,在决定性脉冲之前在没有保幼激素的情况下用蜕皮甾体处理促进蛹发育的效果远不如在决定性脉冲之后进行相同处理,这表明决定性脉冲促进了随后对蜕皮甾体的反应性。因此,决定性脉冲暗中导致幼虫肌肉和运动神经元的激素敏感性发生质和量的变化。

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