Center for Neuroscience, University of California, Davis, California 95618, USA.
Neural Dev. 2011 Mar 14;6:7. doi: 10.1186/1749-8104-6-7.
In the adult visual system, functionally distinct retinal ganglion cells (RGCs) within each eye project to discrete targets in the brain. In the ferret, RGCs encoding light increments or decrements project to independent On and Off sublaminae within each eye-specific layer of the dorsal lateral geniculate nucleus (dLGN). Here we report a manipulation of retinal circuitry that alters RGC action potential firing patterns during development and eliminates the anatomical markers of segregated On and Off sublaminae in the LGN, including the intersublaminar spaces and the expression of a glial-associated inhibitory molecule, ABAKAN, normally separating On and Off leaflets. Despite the absence of anatomically defined On and Off sublaminae, electrophysiological recordings in the dLGN reveal that On and Off dLGN cells are segregated normally. These data demonstrate a dissociation between normal anatomical sublamination and segregation of function in the dLGN and call into question a purported role for ABAKAN boundaries in the developing visual system.
在成人视觉系统中,每只眼内功能不同的视网膜神经节细胞(RGC)投射到大脑中的不同靶位。在雪貂中,编码光递增或递减的 RGC 投射到每个眼特异性背外侧膝状体核(dLGN)层内独立的 On 和 Off 亚层。在这里,我们报告了一种对视网膜回路的操作,该操作改变了发育过程中 RGC 动作电位发放模式,并消除了 LGN 中分离 On 和 Off 亚层的解剖标记,包括层间空间和通常分离 On 和 Off 叶的神经胶质相关抑制分子 ABAKAN 的表达。尽管缺乏解剖定义的 On 和 Off 亚层,但 dLGN 中的电生理记录显示 On 和 Off dLGN 细胞正常分离。这些数据表明 dLGN 中正常的解剖亚分层和功能分离之间存在分离,并质疑 ABAKAN 边界在发育中的视觉系统中的假定作用。