首页> 外文期刊>The Journal of Experimental Biology >Excitatory and inhibitory roles of central ganglia in initiation of the insect ecdysis behavioural sequence.
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Excitatory and inhibitory roles of central ganglia in initiation of the insect ecdysis behavioural sequence.

机译:中央神经节在昆虫蜕皮行为序列启动中的兴奋和抑制作用。

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摘要

Insects shed their old cuticle by performing the ecdysis behavioural sequence. To activate each subunit of this set of programmed behaviours in Manduca sexta, specific central ganglia are targeted by pre-ecdysis-triggering (PETH) and ecdysis-triggering (ETH) hormones secreted from Inka cells. PETH and ETH act on each abdominal ganglion to initiate, within a few minutes, pre-ecdysis I and II, respectively. Shortly thereafter, ETH targets the tritocerebrum and suboesophageal ganglion to activate theecdysis neural network in abdominal ganglia through the elevation of cyclic GMP (cGMP) levels. However, the onset of ecdysis behaviour is delayed by inhibitory factor(s) from the cephalic and thoracic ganglia. The switch from pre-ecdysis to ecdysis is controlled by an independent clock in each abdominal ganglion and is considerably accelerated after removal of the head and thorax. Eclosion hormone (EH) appears to be one of the central signals inducing elevation of cGMP levels and ecdysis, but these actions are quite variable and usually restricted to anterior ganglia. EH treatment of desheathed ganglia also elicits strong production of cGMP in intact ganglia, suggesting that this induction occurs via the release of additional downstream factors. Our data suggest that the initiation of pre-ecdysis and the transition to ecdysis are regulated by stimulatory and inhibitory factors released within the central nervous system after the initial actions of PETH and ETH.
机译:昆虫通过执行蜕皮行为顺序来摆脱它们的旧表皮。为了激活曼杜卡六性纲中这组程序化行为的每个亚基,特定的中枢神经节由印加细胞分泌的促蜕变前触发(PETH)和促蜕变(ETH)激素作为目标。 PETH和ETH作用于每个腹部神经节,在几分钟内分别引发蜕皮前的I和II。此后不久,ETH靶向三脑和食管下神经节,通过升高循环GMP(cGMP)水平激活腹部神经节的蜕皮神经网络。然而,蜕皮行为的发作被来自头部和胸部神经节的抑制因子所延迟。从蜕皮前转变为蜕皮由每个腹部神经节中的独立时钟控制,并且在移开头部和胸部后大大加速。促凝激素(EH)似乎是引起cGMP水平升高和蜕皮的主要信号之一,但这些作用变化很大,通常局限于前神经节。 EH治疗脱水的神经节也引起完整神经节中cGMP的大量产生,表明这种诱导是通过释放其他下游因子而发生的。我们的数据表明,在PETH和ETH的初始作用后,中枢神经系统内释放的刺激性和抑制性因子调节着前蜕皮的开始和向蜕皮的过渡。

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