Department of Bioengineering, School of Engineering and Applied Science, University of Pennsylvania, Philadelphia, Pennsylvania.
Department of Neurology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
J Neurophysiol. 2022 Aug 1;128(2):302-309. doi: 10.1152/jn.00444.2021. Epub 2022 Jun 22.
The nematode uses rhythmic muscle contractions (pumps) of the pharynx, a tubular feeding organ, to filter, transport, and crush food particles. A number of feeding mutants have been identified, including those with slow pharyngeal pumping rate, weak muscle contraction, defective muscle relaxation, and defective grinding of bacteria. Many aspects of these pharyngeal behavioral defects and how they affect pharyngeal function are not well understood. For example, the behavioral deficits underlying inefficient particle transport in "slippery" mutants have been unclear. Here we use high-speed video microscopy to describe pharyngeal pumping behaviors and particle transport in wild-type animals and in feeding mutants. Different "slippery" mutants exhibit distinct defects including weak isthmus contraction, failure to trap particles in the anterior isthmus, and abnormal timing of contraction and relaxation in pharyngeal compartments. Our results show that multiple deficits in pharyngeal timing or contraction can cause defects in particle transport. The nematode uses rhythmic contractions of its pharynx (feeding organ) to filter, transport, and crush food bacteria. Genetic analyses have identified mutants with defective pharyngeal motions, but many details of these movements and how they affect feeding are poorly understood. We use high-speed video microscopy to describe pharyngeal pumping behaviors and particle transport in feeding mutants. We find that multiple deficits in pharyngeal timing or contraction can cause defects in particle transport.
秀丽隐杆线虫利用其咽部(进食器官)的有节奏收缩来过滤、运输和粉碎食物细菌。遗传分析已经鉴定出了一些咽部运动有缺陷的突变体,但这些运动的许多细节以及它们如何影响进食仍知之甚少。我们使用高速视频显微镜来描述进食突变体的咽部抽吸行为和颗粒运输。我们发现,咽部定时或收缩的多种缺陷可能导致颗粒运输缺陷。