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C. elegans sensing of and entrainment along obstacles require different neurons at different body locations

机译:秀丽隐杆线虫对障碍物的感知和沿着障碍物的夹带需要在不同身体位置使用不同的神经元

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摘要

We probe C. elegans mechanosensation using a microfabricated platform where worms encounter a linear array of asymmetric funnel-like barriers. We found that sensing of and moving along barriers require different sets of neurons located at different parts of the animal. Wild-type worms sense and move along the barrier walls, leading to their accumulation in one side of the barriers due to the barriers' asymmetric shape. However, mec-4 and mec-10 mutants deficient in touch sensory neurons in the body exhibited reversal movements at the walls, leading to no accumulation in either side of the barriers. In contrast, osm-9 mutants deficient in touch sensory neurons in the nose, moved along the barrier walls. Thus, touch sensory neurons ALM and AVM in the body are required for C. elegans to sense and move along obstacles, whereas the ASH and FLP neurons in the nose are required only for sensing of but not moving along obstacles.
机译:我们使用微加工的平台探查秀丽隐杆线虫的机械传感,其中蠕虫遇到线性阵列的不对称漏斗状屏障。我们发现,感知障碍并沿着障碍移动需要位于动物不同部位的不同神经元集。野生型蠕虫感测并沿着屏障壁移动,由于屏障的不对称形状,导致它们在屏障的一侧积聚。但是,体内缺乏触摸感觉神经元的mec-4和mec-10突变体在壁上显示出逆向运动,从而导致在屏障的任​​一侧均没有积累。相反,鼻子中缺乏触觉神经元的osm-9突变体沿屏障壁移动。因此,秀丽隐杆线虫要感知并沿着障碍物移动,就需要身体中的触觉神经元ALM和AVM,而鼻子中的ASH和FLP神经元仅需要感知但不沿着障碍物移动。

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