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« Previous Abstract"The brain organization of the lichen moth Eilema japonica, which secretes an alkenyl sex pheromone"    Next AbstractAntennal lobe organization and pheromone usage in bombycid moths »

J Comp Neurol


Title:Concentric zones for pheromone components in the mushroom body calyx of the moth brain
Author(s):Namiki S; Takaguchi M; Seki Y; Kazawa T; Fukushima R; Iwatsuki C; Kanzaki R;
Address:"Intelligent Cooperative Systems Laboratory, Research Center for Advanced Science and Technology, University of Tokyo, Tokyo 153-8904, Japan"
Journal Title:J Comp Neurol
Year:2013
Volume:521
Issue:5
Page Number:1073 - 1092
DOI: 10.1002/cne.23219
ISSN/ISBN:1096-9861 (Electronic) 0021-9967 (Linking)
Abstract:"The spatial distribution of input and output neurons in the mushroom body (MB) calyx was investigated in the silkmoth Bombyx mori. In Lepidoptera, the brain has a specialized system for processing sex pheromones. How individual pheromone components are represented in the MB has not yet been elucidated. Toward this end, we first compared the distribution of the presynaptic boutons of antennal lobe projection neurons (PNs), which transfer odor information from the antennal lobe to the MB calyx. The axons of PNs that innervate pheromonal glomeruli were confined to a relatively small area within the calyx. In contrast, the axons of PNs that innervate nonpheromonal glomeruli were more widely distributed. PN axons for the minor pheromone component covered a larger area than those for the major pheromone component and partially overlapped with those innervating nonpheromonal glomeruli, suggesting the integration of the minor pheromone component with plant odors. Overall, we found that PN axons innervating pheromonal and nonpheromonal glomeruli were organized into concentric zones. We then analyzed the dendritic fields of Kenyon cells (KCs), which receive inputs from PNs. Despite the strong regional localization of axons of different PN classes, the dendrites of KCs were less well classified. Finally, we estimated the connectivity between PNs and KCs and suggest that the dendritic field may be organized to receive different amounts of pheromonal and nonpheromonal inputs. PNs for multiple pheromone components and plant odors enter the calyx in a concentric fashion, and they are read out by the elaborate dendritic field of KCs"
Keywords:"Analysis of Variance Animals Brain/*anatomy & histology Cell Count Dendrites/physiology Microscopy, Confocal Moths/*anatomy & histology Mushroom Bodies/*cytology/metabolism Nerve Net/physiology Neurons/classification/cytology/*metabolism Olfactory Pathway;"
Notes:"MedlineNamiki, Shigehiro Takaguchi, Mitsuko Seki, Yoichi Kazawa, Tomoki Fukushima, Ryota Iwatsuki, Chika Kanzaki, Ryohei eng Research Support, Non-U.S. Gov't 2012/08/23 J Comp Neurol. 2013 Apr 1; 521(5):1073-92. doi: 10.1002/cne.23219"

 
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Citation: El-Sayed AM 2024. The Pherobase: Database of Pheromones and Semiochemicals. <http://www.pherobase.com>.
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