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在秀丽隐杆线虫中,胶质细胞衍生的神经元对于性别特异性学习是必需的。

Glia-derived neurons are required for sex-specific learning in C. elegans.

作者信息

Sammut Michele, Cook Steven J, Nguyen Ken C Q, Felton Terry, Hall David H, Emmons Scott W, Poole Richard J, Barrios Arantza

机构信息

Department of Cell and Developmental Biology, University College London, London, WC1E 6BT.

Dominick P. Purpura Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY 10461.

出版信息

Nature. 2015 Oct 15;526(7573):385-390. doi: 10.1038/nature15700.

Abstract

Sex differences in behaviour extend to cognitive-like processes such as learning, but the underlying dimorphisms in neural circuit development and organization that generate these behavioural differences are largely unknown. Here we define at the single-cell level-from development, through neural circuit connectivity, to function-the neural basis of a sex-specific learning in the nematode Caenorhabditis elegans. We show that sexual conditioning, a form of associative learning, requires a pair of male-specific interneurons whose progenitors are fully differentiated glia. These neurons are generated during sexual maturation and incorporated into pre-exisiting sex-shared circuits to couple chemotactic responses to reproductive priorities. Our findings reveal a general role for glia as neural progenitors across metazoan taxa and demonstrate that the addition of sex-specific neuron types to brain circuits during sexual maturation is an important mechanism for the generation of sexually dimorphic plasticity in learning.

摘要

行为上的性别差异延伸到诸如学习等类似认知的过程,但产生这些行为差异的神经回路发育和组织中潜在的二态性在很大程度上尚不清楚。在这里,我们在单细胞水平上——从发育、通过神经回路连接性到功能——定义了线虫秀丽隐杆线虫中一种性别特异性学习的神经基础。我们表明,性条件反射是一种联想学习形式,需要一对雄性特异性中间神经元,其祖细胞是完全分化的神经胶质细胞。这些神经元在性成熟期间产生,并整合到预先存在的性别共享回路中,以将趋化反应与生殖优先级联系起来。我们的发现揭示了神经胶质细胞作为后生动物类群中神经祖细胞的普遍作用,并证明在性成熟期间向脑回路中添加性别特异性神经元类型是在学习中产生性别二态性可塑性的重要机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1eef/4650210/1ea1adcb3b89/emss-65067-f0007.jpg

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