Avery Leon, Shtonda Boris B
Department of Molecular Biology, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390-9148, USA.
J Exp Biol. 2003 Jul;206(Pt 14):2441-57. doi: 10.1242/jeb.00433.
Pumping of the C. elegans pharynx transports food particles (bacteria) posteriorly. We examined muscle motions to determine how this posterior transport is effected. We find that the motions of the middle section of the pharynx, the anterior isthmus, are delayed relative to the anterior section, the corpus. Simulations in which particles are assumed to move at mean fluid velocity when not captured by the walls of the pharyngeal lumen show that delayed isthmus motions do indeed cause net particle transport; however, the amount is much less than in the real pharynx. We propose that the geometry of the pharyngeal lumen forces particles to the center, where they move faster than mean fluid velocity. When this acceleration is incorporated into the simulation, particles are transported efficiently. The transport mechanism we propose explains past observations that the timing of muscle relaxation is important for effective transport. Our model also makes a prediction, which we confirm, that smaller bacteria are better food sources for C. elegans than large ones.
秀丽隐杆线虫咽部的泵送将食物颗粒(细菌)向后运输。我们研究了肌肉运动,以确定这种向后运输是如何实现的。我们发现,咽部中间部分即前峡部的运动相对于前部即体部是延迟的。在模拟中,当颗粒未被咽腔壁捕获时,假设其以平均流体速度移动,结果表明峡部运动延迟确实会导致颗粒的净运输;然而,运输量远低于真实咽部的情况。我们提出,咽腔的几何形状迫使颗粒向中心移动,在那里它们的移动速度比平均流体速度快。当将这种加速纳入模拟时,颗粒能够有效地运输。我们提出的运输机制解释了过去的观察结果,即肌肉松弛的时间对于有效运输很重要。我们的模型还做出了一个预测,并且我们证实了,对于秀丽隐杆线虫来说,较小的细菌比较大的细菌是更好的食物来源。