Wasser Hannah, Stern Michael
Division of Cell Biology, University of Veterinary Medicine Hannover, Bischofsholer Damm 15/102, 30173, Hannover, Germany.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2017 Oct;203(10):867-877. doi: 10.1007/s00359-017-1199-z. Epub 2017 Jul 6.
The olfactory pathway of the locust is capable of fast and precise regeneration on an anatomical level. Following deafferentation of the antenna either of young adult locusts, or of fifth instar nymphs, severed olfactory receptor neurons (ORNs) reinnervate the antennal lobe (AL) and arborize in AL microglomeruli. In the present study we tested whether these regenerated fibers establish functional synapses again. Intracellular recordings from AL projection neurons revealed that the first few odor stimulus evoked postsynaptic responses from regenerated ORNs from day 4-7 post crush on. On average, synaptic connections of regenerated afferents appeared faster in younger locusts operated as fifth instar nymphs than in adults. The proportions of response categories (excitatory vs. inhibitory) changed during regeneration, but were back to normal within 21 days. Odor-evoked oscillating extracellular local field potentials (LFP) were recorded in the mushroom body. These responses, absent after antennal nerve crush, reappeared, in a few animals as soon as 4 days post crush. Odor-induced oscillation patterns were restored within 7 days post crush. Both intra- and extracellular recordings indicate the capability of the locust olfactory system to re-establish synaptic contacts in the antennal lobe after antennal nerve lesion.
蝗虫的嗅觉通路在解剖学水平上能够快速且精确地再生。对年轻成虫或五龄若虫的触角进行去传入神经处理后,被切断的嗅觉受体神经元(ORN)会重新支配触角叶(AL)并在AL微球中形成分支。在本研究中,我们测试了这些再生纤维是否再次建立了功能性突触。从AL投射神经元进行的细胞内记录显示,从挤压后第4 - 7天开始,最初的几次气味刺激就会诱发再生ORN的突触后反应。平均而言,作为五龄若虫进行手术的较年轻蝗虫中,再生传入神经的突触连接出现得比成虫更快。在再生过程中,反应类别(兴奋性与抑制性)的比例发生了变化,但在21天内恢复正常。在蘑菇体中记录到了气味诱发的振荡细胞外局部场电位(LFP)。这些在触角神经挤压后消失的反应,在一些动物中最早在挤压后4天就重新出现了。气味诱发的振荡模式在挤压后7天内恢复。细胞内和细胞外记录均表明,蝗虫嗅觉系统在触角神经损伤后能够在触角叶中重新建立突触联系。