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秀丽隐杆线虫中逆转机械感觉剥夺对行为、神经系统和发育影响的关键期和敏感期

Critical and sensitive periods for reversing the effects of mechanosensory deprivation on behavior, nervous system, and development in Caenorhabditis elegans.

作者信息

Rai Susan, Rankin Catharine H

机构信息

Brain Research Center and Department of Psychology, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

Dev Neurobiol. 2007 Sep 15;67(11):1443-56. doi: 10.1002/dneu.20522.

Abstract

In these studies the nematode Caenorhabditis elegans was used as a model to investigate ways to reverse the effects of mechanosensory deprivation on behavior and development. Rose et al. (J Neurosci 2005; 25:7159-7168) showed that worms reared in isolation responded significantly less to a mechanical tap stimulus, were significantly smaller, and expressed significantly lower levels of a postsynaptic glutamate receptor subunit on the command interneurons of the tap response circuit and a presynaptic vesicle marker in the tap sensory neurons compared with worms raised in groups. Here, brief mechanical stimulation at any time throughout development reversed the effects of isolation on the response to tap and on postsynaptic glutamate receptor expression on the command interneurons, suggesting there is no critical period for these measures. In contrast to the high level of plasticity in glutamate receptor subunit expression on the interneurons, low levels of stimulation only rescued vesicle expression in the tap sensory neurons early in development and progressively higher levels of stimulation were required as the worm developed, suggesting a sensitive period immediately after hatching, followed by a period of decreasing plasticity. Stimulation during the first three stages of larval development, but not later, rescued the effects of isolation on worm length, suggesting there is a critical period for this measure that ends in the third larval stage. These results indicate that different effects of early isolation required different amounts and/or timing of stimulation to be reversed.

摘要

在这些研究中,线虫秀丽隐杆线虫被用作模型,以研究逆转机械感觉剥夺对行为和发育影响的方法。罗斯等人(《神经科学杂志》2005年;25:7159 - 7168)表明,与成群饲养的线虫相比,单独饲养的线虫对机械轻敲刺激的反应明显减弱,体型明显更小,并且在轻敲反应回路的指令中间神经元上,突触后谷氨酸受体亚基的表达水平显著降低,在轻敲感觉神经元中,突触前囊泡标记物的表达水平也显著降低。在此,在整个发育过程中的任何时候进行短暂的机械刺激,都能逆转隔离对线虫对轻敲的反应以及对指令中间神经元上突触后谷氨酸受体表达的影响,这表明这些指标不存在关键期。与中间神经元上谷氨酸受体亚基表达的高度可塑性形成对比的是,低水平刺激仅在发育早期挽救了轻敲感觉神经元中的囊泡表达,并且随着线虫的发育,需要逐渐提高刺激水平,这表明在孵化后立即存在一个敏感期,随后是可塑性降低的时期。在幼虫发育的前三个阶段而非之后进行刺激,挽救了隔离对线虫长度的影响,这表明该指标存在一个在第三幼虫阶段结束的关键期。这些结果表明,早期隔离的不同影响需要不同数量和/或时间的刺激才能被逆转。

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