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一部分神经元控制果蝇成虫中围食膜的通透性和中肠结构。

A subset of neurons controls the permeability of the peritrophic matrix and midgut structure in Drosophila adults.

作者信息

Kenmoku Hiroyuki, Ishikawa Hiroki, Ote Manabu, Kuraishi Takayuki, Kurata Shoichiro

机构信息

Department of Molecular Genetics, Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai 980-8578, Japan.

Department of Molecular Genetics, Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai 980-8578, Japan Immune Signal Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, 904-0495, Japan.

出版信息

J Exp Biol. 2016 Aug 1;219(Pt 15):2331-9. doi: 10.1242/jeb.122960. Epub 2016 May 26.

Abstract

The metazoan gut performs multiple physiological functions, including digestion and absorption of nutrients, and also serves as a physical and chemical barrier against ingested pathogens and abrasive particles. Maintenance of these functions and structures is partly controlled by the nervous system, yet the precise roles and mechanisms of the neural control of gut integrity remain to be clarified in Drosophila Here, we screened for GAL4 enhancer-trap strains and labeled a specific subsets of neurons, using Kir2.1 to inhibit their activity. We identified an NP3253 line that is susceptible to oral infection by Gram-negative bacteria. The subset of neurons driven by the NP3253 line includes some of the enteric neurons innervating the anterior midgut, and these flies have a disorganized proventricular structure with high permeability of the peritrophic matrix and epithelial barrier. The findings of the present study indicate that neural control is crucial for maintaining the barrier function of the gut, and provide a route for genetic dissection of the complex brain-gut axis in adults of the model organism Drosophila.

摘要

后生动物的肠道执行多种生理功能,包括营养物质的消化和吸收,并且还作为抵御摄入病原体和磨蚀性颗粒的物理和化学屏障。这些功能和结构的维持部分受神经系统控制,然而在果蝇中,肠道完整性的神经控制的确切作用和机制仍有待阐明。在此,我们筛选了GAL4增强子捕获菌株,并使用Kir2.1抑制其活性来标记特定的神经元亚群。我们鉴定出一个对革兰氏阴性菌口服感染敏感的NP3253品系。由NP3253品系驱动的神经元亚群包括一些支配中肠前部的肠神经元,并且这些果蝇的前胃结构紊乱,围食膜和上皮屏障具有高通透性。本研究结果表明,神经控制对于维持肠道的屏障功能至关重要,并为模式生物果蝇成虫复杂脑-肠轴的遗传剖析提供了一条途径。

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