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运动神经元M3控制秀丽隐杆线虫咽部肌肉的松弛时间。

Motor neuron M3 controls pharyngeal muscle relaxation timing in Caenorhabditis elegans.

作者信息

Avery L

机构信息

Department of Biochemistry, University of Texas, Southwestern Medical Center, Dallas 75235-9038.

出版信息

J Exp Biol. 1993 Feb;175:283-97. doi: 10.1242/jeb.175.1.283.

Abstract
  1. Previous work has shown that 12 of the 14 types of neurons in the Caenorhabditis elegans pharyngeal nervous system are collectively but not individually necessary for the trapping and transport of bacteria. The aim of these experiments was to determine the functions of individual neuron types by laser-killing combinations of neurons and looking at the effects on behavior. 2. The motor neuron M3 and the sensory neuron I5 are important in trapping bacteria, as shown by two observations. First, when M3 and I5 are both killed, trapping is inefficient in the isthmus (the middle section of the pharynx). Second, M3 is sufficient in the absence of the other 11 neuron types for normal trapping in the corpus (anterior pharynx). 3. M3 and I5 influence the timing of pharyngeal muscle motions. When M3 is killed, pump duration (the interval from the beginning of pharyngeal contraction to the end of relaxation) increases from 170 to 196 ms. This increase is at least partially due to a slower relaxation. Thus, M3 speeds up relaxation. Pump duration decreases to 159 ms when I5 is killed. When I5 and M3 are both killed, pump durations are long (192 ms), just as when M3 alone is killed. These observations, together with previous electron microscopic work showing synapses from I5 to M3, suggest that I5 slows down relaxation by inhibiting M3. 4. To explain these results, I propose that M3 and I5 promote bacterial trapping by regulating the relative timing of muscle relaxation in different regions of the pharynx.
摘要
  1. 先前的研究表明,秀丽隐杆线虫咽神经系统的14种神经元类型中的12种共同而非单独对于细菌的捕获和运输是必需的。这些实验的目的是通过激光杀死神经元组合并观察对行为的影响来确定单个神经元类型的功能。2. 运动神经元M3和感觉神经元I5在捕获细菌方面很重要,这有两点观察结果可以证明。首先,当M3和I5都被杀死时,峡部(咽部中间部分)的捕获效率低下。其次,在没有其他11种神经元类型的情况下,M3足以在体部(咽前部)进行正常捕获。3. M3和I5影响咽部肌肉运动的时间。当M3被杀死时,泵吸持续时间(从咽部收缩开始到松弛结束的间隔)从170毫秒增加到196毫秒。这种增加至少部分是由于松弛较慢。因此,M3加速了松弛。当I5被杀死时,泵吸持续时间降至159毫秒。当I5和M3都被杀死时,泵吸持续时间很长(192毫秒),就像仅杀死M3时一样。这些观察结果,连同先前的电子显微镜研究表明从I5到M3有突触,表明I5通过抑制M3来减缓松弛。4. 为了解释这些结果,我提出M3和I5通过调节咽部不同区域肌肉松弛的相对时间来促进细菌捕获。

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