Paired and solitary ionocytes in the zebrafish olfactory epithelium.

IF 1.9 4区 心理学 Q1 BEHAVIORAL SCIENCES
Julia Peloggia, King Yee Cheung, Mariela D Petkova, Richard Schalek, Jonathan Boulanger-Weill, Yuelong Wu, Shuohong Wang, Nicholas J van Hateren, Michał Januszewski, Viren Jain, Jeff W Lichtman, Florian Engert, Tatjana Piotrowski, Tanya T Whitfield, Suresh Jesuthasan
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引用次数: 0

Abstract

The sense of smell is generated by electrical currents that are influenced by the concentration of ions in olfactory sensory neurons and mucus. In contrast to the extensive morphological and molecular characterization of sensory neurons, there has been little description of the cells that control ion concentrations in the zebrafish olfactory system. Here, we report the molecular and ultrastructural characterization of zebrafish olfactory ionocytes. Transcriptome analysis suggests that the zebrafish olfactory epithelium contains at least three different ionocyte types, which resemble Na+/K+-ATPase-rich (NaR), H+-ATPase-rich (HR), and Na+/Cl- cotransporter (NCC) cells, responsible for calcium, pH, and chloride regulation, respectively, in the zebrafish skin. In the olfactory epithelium, NaR-like and HR-like ionocytes are usually adjacent to one another, whereas NCC-like cells are usually solitary. The distinct subtypes are differentially distributed: NaR-like/HR-like cell pairs are found broadly within the olfactory epithelium, whereas NCC-like cells reside within the peripheral non-sensory multiciliated cell zone. Comparison of gene expression and serial-section electron microscopy analysis indicates that the NaR-like cells wrap around the HR-like cells and are connected to them by shallow tight junctions. The development of olfactory ionocyte subtypes is also differentially regulated, as pharmacological Notch inhibition leads to a loss of NaR-like and HR-like cells, but does not affect NCC-like ionocyte number. These results provide a molecular and anatomical characterization of olfactory ionocytes in a stenohaline freshwater teleost. The paired ionocytes suggest that both transcellular and paracellular transport regulate ion concentrations in the olfactory epithelium, while the solitary ionocytes may enable independent regulation of ciliary beating.

斑马鱼嗅觉上皮中的成对和孤立离子细胞。
嗅觉是由电流产生的,电流受嗅觉感觉神经元和粘液中离子浓度的影响。与广泛的感觉神经元形态学和分子表征相反,对斑马鱼嗅觉系统中控制离子浓度的细胞的描述很少。在这里,我们报告了斑马鱼嗅觉离子细胞的分子和超微结构特征。转录组分析表明,斑马鱼嗅觉上皮包含至少三种不同的离子细胞类型,它们类似于Na+/K+- atp -富(NaR)、H+- atp -富(HR)和Na+/Cl-共转运体(NCC)细胞,分别负责斑马鱼皮肤中的钙、pH和氯化物调节。在嗅觉上皮中,na -like和HR-like离子细胞通常彼此相邻,而NCC-like细胞通常是孤立的。不同的亚型分布不同:na样/ hr样细胞对广泛存在于嗅觉上皮内,而ncc样细胞则存在于周围非感觉多纤毛细胞区。基因表达比较和序列切片电镜分析表明,na样细胞包裹在hr样细胞周围,并通过浅紧密连接与hr样细胞相连。嗅觉离子细胞亚型的发育也受到差异调节,因为药物Notch抑制导致na样和hr样细胞的损失,但不影响ncc样离子细胞的数量。这些结果提供了窄盐淡水硬骨鱼嗅觉离子细胞的分子和解剖学特征。配对的离子细胞表明,跨细胞和细胞旁运输都能调节嗅觉上皮内的离子浓度,而单独的离子细胞可能能独立调节纤毛跳动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemical Senses
Chemical Senses 医学-行为科学
CiteScore
8.60
自引率
2.90%
发文量
25
审稿时长
1 months
期刊介绍: Chemical Senses publishes original research and review papers on all aspects of chemoreception in both humans and animals. An important part of the journal''s coverage is devoted to techniques and the development and application of new methods for investigating chemoreception and chemosensory structures.
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