A Feeding-Related Mechanoreceptor Identified in the Crab Cancer borealis Shares Similarities and Differences with Homologs in Other Crustaceans.

IF 2.1 4区 生物学 Q2 BIOLOGY Biological Bulletin Pub Date : 2023-04-01 Epub Date: 2023-08-31 DOI:10.1086/726773
Peter K D Hovland, Jose A Tochihuitl, John T Birmingham
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Abstract

AbstractSensory feedback plays an essential role in shaping rhythmic animal movements. In the crustacean stomatogastric nervous system, which is responsible for grinding and filtering food particles in the animal's foregut, a number of mechanoreceptors whose activity affects motor output have been characterized. The hepatopancreas duct receptor neurons, which are located in the pyloric region of the foregut that is responsible for filtering, are among the less well understood groups of stomatogastric mechanoreceptors. Although they were first described decades ago in a number of decapod species, many questions remain about their role in shaping the movements produced by the stomatogastric nervous system. Here we provide the first anatomical and physiological evidence that there are also hepatopancreas duct receptors in the crab Cancer borealis, and we demonstrate that hepatopancreas duct receptor spiking produced by mechanical stimulation modifies the properties of an ongoing pyloric motor program.

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癌症河蟹中发现的一种与饲养相关的机械感受器与其他甲壳纲动物中的同源物具有相似性和差异性。
感官反馈在塑造动物有节奏的动作中起着至关重要的作用。在负责研磨和过滤动物前肠中食物颗粒的甲壳类动物口胃神经系统中,已经确定了许多活动影响运动输出的机械感受器的特征。肝胰管受体神经元位于前肠幽门区,负责过滤,是人们不太了解的口腔胃机械感受器组之一。尽管几十年前在许多十足目物种中首次描述了它们,但关于它们在形成口腔胃神经系统产生的运动中的作用,仍有许多问题。在这里,我们提供了第一个解剖学和生理学证据,证明在癌症北方蟹中也存在肝胰管受体,我们证明了机械刺激产生的肝胰管接收器尖峰改变了正在进行的幽门运动程序的特性。
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来源期刊
Biological Bulletin
Biological Bulletin 生物-海洋与淡水生物学
CiteScore
3.30
自引率
6.20%
发文量
47
审稿时长
6-12 weeks
期刊介绍: The Biological Bulletin disseminates novel scientific results in broadly related fields of biology in keeping with more than 100 years of a tradition of excellence. The Bulletin publishes outstanding original research with an overarching goal of explaining how organisms develop, function, and evolve in their natural environments. To that end, the journal publishes papers in the fields of Neurobiology and Behavior, Physiology and Biomechanics, Ecology and Evolution, Development and Reproduction, Cell Biology, Symbiosis and Systematics. The Bulletin emphasizes basic research on marine model systems but includes articles of an interdisciplinary nature when appropriate.
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