首页> 美国卫生研究院文献>The Journal of Neuroscience >Expansion of the central arborizations of persistent sensory neurons during insect metamorphosis: the role of the steroid hormone 20- hydroxyecdysone
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Expansion of the central arborizations of persistent sensory neurons during insect metamorphosis: the role of the steroid hormone 20- hydroxyecdysone

机译:昆虫变态过程中持续感觉神经元中央树突的扩展:类固醇激素20-羟基蜕皮激素的作用

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摘要

During insect metamorphosis many larval neurons persist but are modified to serve new behavioral roles at later stages of life. For example, certain larval mechanosensory neurons expand their central arborizations during pupal development and evoke a different behavioral response, the gin trap reflex. The role of the insect steroid hormone, 20-hydroxyecdysone (20-HE) in this developmental change was investigated by removing the normal source of the hormone, followed by topical application of 20-HE to the peripheral somata of the sensory neurons. In prepupal animals that were ligated between the abdomen and thorax to remove the source of ecdysteroids the sensory neurons retained a larval arborization pattern. Topical application of 20-HE to the peripheral sensory neuron somata caused the treated neurons to undergo terminal arbor expansion within the CNS. The treated sensory neurons were not able to evoke the normal pupal behavioral response, but instead caused a larval-like reflex response. In a previous study, sensory neurons that were treated peripherally with a juvenile hormone analog during the commitment peak of ecdysteroids were shown to retain a larval arborization pattern at pupation and to not evoke the gin trap reflex (Levine et al., 1986). Within 4 d of pupation, however, these neurons belatedly developed expanded terminal arbors and evoked the pupal reflex. In the present study, similarly treated animals were ligated at pupation to block the surge in ecdysteroids that normally occurs at this time. This treatment prevented both the delayed expansion and the reflex, whereas topical 20-HE application induced growth and allowed the treated sensory neurons to evoke the gin trap reflex. It is concluded that both 20-HE and juvenile hormone act directly on the cell bodies of the sensory neurons to regulate the growth of their central processes. This growth is necessary but not sufficient for the development of the gin trap reflex, suggesting that other steroid-dependent changes must also occur within the CNS. Thus, as in the vertebrates, steroid hormones direct important developmental events within the insect nervous system.
机译:在昆虫变态期间,许多幼虫神经元会持续存在,但会被修饰以在生命的后期发挥新的行为作用。例如,某些幼虫机械感觉神经元在p发育过程中会扩展其中央树状结构,并引起不同的行为反应,即杜松子酒陷阱反射。昆虫类固醇激素20-羟基蜕皮激素(20-HE)在这种发育变化中的作用是通过去除激素的正常来源,然后将20-HE局部应用到感觉神经元的周围躯体上来进行研究的。在腹部和胸部之间结扎以去除蜕皮类固醇来源的足前动物中,感觉神经元保留了幼虫的乔木化模式。将20-HE局部应用到周围感觉神经元的躯体上导致被治疗的神经元在CNS内经历末端乔木扩展。处理过的感觉神经元不能引起正常的p行为反应,而是引起幼虫样反射反应。在先前的研究中,在蜕皮激素的达标峰期用幼稚激素类似物进行外周处理的感觉神经元显示在化脓时保留了幼虫的树状图案,并且不会引起杜松子酒的反射(Levine等,1986)。化脓后4 d内,这些神经元迟来发展成末端扩张的轴突并引起了the反射。在本研究中,化脓后结扎了相似治疗的动物,以阻止此时通常发生的蜕皮类固醇激增。这种治疗可以防止延迟的扩张和反射,而局部使用20-HE可以诱导生长,并允许治疗的感觉神经元引起杜松子酒的反射。结论是20-HE和少年激素都直接作用于感觉神经元的细胞体,以调节其中央过程的生长。这种生长对于杜松子酒陷阱反射的发展是必要的,但并不足够,这表明中枢神经系统内还必须发生其他依赖类固醇的变化。因此,如在脊椎动物中,类固醇激素指导昆虫神经系统内的重要发育事件。

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