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首页> 外文期刊>The Journal of Experimental Biology >THE INITIATION OF PRE-ECDYSIS AND ECDYSIS BEHAVIORS IN LARVAL MANDUCA SEXTA - THE ROLES OF THE BRAIN, TERMINAL GANGLION AND ECLOSION HORMONE
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THE INITIATION OF PRE-ECDYSIS AND ECDYSIS BEHAVIORS IN LARVAL MANDUCA SEXTA - THE ROLES OF THE BRAIN, TERMINAL GANGLION AND ECLOSION HORMONE

机译:幼体隔断的前兆和前兆行为的启动-脑,端神经节和消融激素的作用

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Each larval molt of Manduca sexta culminates in the sequential performance of pre-ecdysis (cuticle loosening) and ecdysis (cuticle shedding) behaviors, Both behaviors are thought to be triggered by the release of a peptide, eclosion hormone (EH), from brain neurons whose axons extend the length of the nervous system, EH bioactivity appears in the hemolymph at the onset of pre-ecdysis behavior, and EH injection can trigger pre-ecdysis and ecdysis behaviors prematurely, The present study examined the effects of removing or disconnecting portions of the central nervous system prior to the time of EH release on the initiation of pre-ecdysis and ecdysis behaviors at the final larval molt. We found that the initiation of pre-ecdysis abdominal compressions at the appropriate time required the terminal abdominal ganglion (AT) but not the brain; the initiation of pre-ecdysis proleg retractions at the appropriate time required neither the AT nor the brain; the initiation of ecdysis at the appropriate time usually required the brain but did not require the AT; and premature pre-ecdysis (but not ecdysis) could be elicited in isolated abdomens by injection of EH, Finally, pre-ecdysis behavior performed by brainless larvae was not associated with the normal elevation of EH bioactivity in the hemolymph or the normal loss of EH immunoreactivity from peripheral neurohemal release sites. [References: 47]
机译:Manduca sexta的每个幼虫蜕皮在蜕皮前(表皮松动)和蜕皮(表皮脱落)行为的顺序表现达到最高点。两种行为都被认为是由脑神经元释放一种肽,促凝激素(EH)引起的。其轴突延长了神经系统的长度,EH生物活性在蜕皮前行为开始时出现在血淋巴中,EH注射可过早触发蜕皮前和蜕皮行为。 EH释放之前的中枢神经系统在幼虫蜕变开始前蜕皮和蜕皮行为时就开始了。我们发现,在适当的时候开始蜕皮前腹部压缩需要末端的腹神经节(AT),而不是大脑。在适当的时间开始蜕皮前牵缩,既不需要AT也不需要大脑;在适当的时候开始蜕皮通常需要大脑,但不需要AT;并且通过注射EH可以在孤立的腹部引发过早的蜕皮(但不是蜕皮)。最后,无脑幼虫进行的蜕皮前行为与血淋巴中EH生物活性的正常升高或EH的正常丧失无关。外周神经血流释放部位的免疫反应性。 [参考:47]

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