Complex dendritic trees are a distinctive feature of neurons. Alterations to dendritic morphology are associated with developmental, behavioral and neurodegenerative changes. The highly-arborized PVD neuron of C. elegans serves as a model to study dendritic patterning; however, quantitative, objective and automated analyses of PVD morphology are missing. Here, we present a method for neuronal feature extraction, based on deep-learning and fitting algorithms. The extracted neuronal architecture is represented by a database of structural elements for abstracted analysis. We obtain excellent automatic tracing of PVD trees and uncover that dendritic junctions are unevenly distributed. Surprisingly, these junctions are three-way-symmetrical on average, while dendritic processes are arranged orthogonally. We quantify the effect of mutation in git-1, a regulator of dendritic spine formation, on PVD morphology and discover a localized reduction in junctions. Our findings shed new light on PVD architecture, demonstrating the effectiveness of our objective analyses of dendritic morphology and suggest molecular control mechanisms.
Neuron tracing and quantitative analyses of dendritic architecture reveal symmetrical three-way-junctions and phenotypes of git-1 in C. elegans.
神经元追踪和树突结构的定量分析揭示了秀丽隐杆线虫中 git-1 的对称三向连接和表型
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作者:Yuval Omer, Iosilevskii Yael, Meledin Anna, Podbilewicz Benjamin, Shemesh Tom
| 期刊: | PLoS Computational Biology | 影响因子: | 3.600 |
| 时间: | 2021 | 起止号: | 2021 Jul 19; 17(7):e1009185 |
| doi: | 10.1371/journal.pcbi.1009185 | 研究方向: | 神经科学 |
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