Shanmugam Muniesh Muthaiyan, Kapahi Pankaj
Buck Institute for Research on Aging, Novato, CA, USA.
Bio Protoc. 2024 Sep 20;14(18):e5073. doi: 10.21769/BioProtoc.5073.
is a well-established nematode model organism, with 83% of its genes conserved in humans with translation potential. C. elegans is translucent, with clearly defined cellular organization, and robustly identifiable under a microscope, being an excellent model for studying feeding behavior. Its neuromuscular pharyngeal pump undergoes a pumping motion that can be quantified to study feeding behavior at specific treatment conditions and in genetically modified worms. Understanding the evolutionarily conserved feeding behaviors and regulatory signals is vital, as unhealthy eating habits increase the risk of associated diseases. The current protocol was developed to identify and study evolutionary conserved signals regulating feeding behavior. The protocol described here is very robust in calculating the pumping rate (pumping per minute) as it directly counts the pharyngeal pumping for 30 s. This protocol uses basic laboratory instrumentation, such as a stereomicroscope with an attached camera and a computer with a video program that can be used to count manually. The advantages of studying C. elegans feeding include understanding the genetic basis of feeding regulation, dysregulation of feeding behavior in a disease model, the influence of toxic or environmental substances in feeding behavior, and modulation of feeding behavior by pharmacological agents. Key features • Quantifies pharyngeal pumping, which can be used to study up/downstream signaling in feeding regulation. • Uses a phenotype (pharyngeal pumping) that is easy to score. • Requires only a stereomicroscope with a camera to record the pharyngeal pumping, which can be counted manually.
是一种成熟的线虫模式生物,其83%的基因在人类中保守且具有翻译潜力。秀丽隐杆线虫是透明的,具有明确的细胞组织,在显微镜下易于识别,是研究摄食行为的优秀模型。其神经肌肉咽泵进行一种可量化的泵送运动,以研究特定处理条件下和转基因蠕虫中的摄食行为。了解进化上保守的摄食行为和调节信号至关重要,因为不健康的饮食习惯会增加相关疾病的风险。当前的方案是为了识别和研究调节摄食行为的进化保守信号而制定的。这里描述的方案在计算泵送速率(每分钟泵送次数)方面非常可靠,因为它直接计数咽泵动30秒。该方案使用基本的实验室仪器,如带有附加摄像头的体视显微镜和带有可用于手动计数的视频程序的计算机。研究秀丽隐杆线虫摄食的优点包括了解摄食调节的遗传基础、疾病模型中摄食行为的失调、有毒或环境物质对摄食行为的影响以及药物制剂对摄食行为的调节。关键特征 • 量化咽泵动,可用于研究摄食调节中的上游/下游信号传导。 • 使用易于评分的表型(咽泵动)。 • 仅需要带有摄像头的体视显微镜来记录咽泵动,可手动计数。