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线虫秀丽隐杆线虫的咽部:用于运动控制研究的模型系统。

The pharynx of the nematode C. elegans: A model system for the study of motor control.

作者信息

Song Bo-Mi, Avery Leon

机构信息

Department of Physiology and Biophysics; Virginia Commonwealth University; Richmond, VA USA.

出版信息

Worm. 2013 Jan 1;2(1):e21833. doi: 10.4161/worm.21833.

Abstract

Motor control is a complex process that requires interplay among the nervous system, muscles and environment. The simple anatomy, well-characterized muscle movements and ample resources for molecular and cellular dissection make the pharynx of the nematode C. elegans an attractive model system for the study of motor control. The C. elegans pharynx shows two clear muscle movements that are essential for food intake, pharyngeal pumping and isthmus peristalsis. Here, we review our recent findings on the mechanism by which food activates the feeding motions. To understand this process, we characterized the behavior of the feeding motions in response to serotonin, an endogenous pharyngeal pumping activator whose action is triggered by food. We found that: (1) the timing of onset and frequencies of the two feeding motions are distinct; (2) isthmus peristalsis is selectively coupled to the preceding pump; (3) like food, serotonin activates isthmus peristalsis as well as pharyngeal pumping. By genetic analysis, we showed that two separate neural pathways activate the two feeding motions explaining the differences between the two feeding motions. We also proposed a model that explains how the two feeding motions are separately controlled, yet coupled by the interaction between the nervous system and the muscles in the pharynx. Finally, we briefly discuss future approaches to further understand the mechanism that couples the two feeding motions in C. elegans and to possibly understand evolution of motor control in the pharynx by expanding findings in C. elegans to other nematode species.

摘要

运动控制是一个复杂的过程,需要神经系统、肌肉和环境之间的相互作用。线虫秀丽隐杆线虫的咽部具有简单的解剖结构、特征明确的肌肉运动以及丰富的分子和细胞解剖资源,使其成为研究运动控制的一个有吸引力的模型系统。秀丽隐杆线虫的咽部表现出两种明显的肌肉运动,这对食物摄取、咽部抽吸和峡部蠕动至关重要。在这里,我们回顾了我们最近关于食物激活进食运动机制的研究发现。为了理解这个过程,我们描述了进食运动对血清素(一种内源性咽部抽吸激活剂,其作用由食物触发)的反应行为。我们发现:(1)两种进食运动的起始时间和频率不同;(2)峡部蠕动选择性地与前一次抽吸相关联;(3)与食物一样,血清素激活峡部蠕动以及咽部抽吸。通过遗传分析,我们表明两条独立的神经通路激活了这两种进食运动,解释了这两种进食运动之间的差异。我们还提出了一个模型,解释了这两种进食运动是如何分别受到控制,但又通过咽部神经系统和肌肉之间的相互作用而相互关联的。最后,我们简要讨论了未来的研究方法,以进一步了解秀丽隐杆线虫中这两种进食运动相互关联的机制,并有可能通过将秀丽隐杆线虫的研究结果扩展到其他线虫物种来理解咽部运动控制的进化。

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