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盐度对广盐性淡水鱼(虱目鱼)鳃中水通道蛋白 3 表达和定位的影响。

Salinity effects on expression and localization of aquaporin 3 in gills of the euryhaline milkfish (Chanos chanos).

机构信息

Department of Life Sciences, National Chung Hsing University, Taichung, Taiwan.

The iEGG and Animal Biotechnology Center, National Chung Hsing University, Taichung, Taiwan.

出版信息

J Exp Zool A Ecol Integr Physiol. 2023 Dec;339(10):951-960. doi: 10.1002/jez.2744. Epub 2023 Aug 13.

DOI:10.1002/jez.2744
PMID:37574887
Abstract

Milkfish (Chanos chanos) are important euryhaline fish in Southeast Asian countries that can tolerate a wide range of salinity changes. Previous studies have revealed that milkfish have strong ion regulation and survival abilities under osmotic stress. In addition to ion regulation, water homeostasis in euryhaline teleosts is important during environmental salinity shifts. Aquaporins (AQP) are vital water channels in fish, and different AQPs can transport water influx or outflux from the body. AQP3 is one of the AQP channels, and the function of AQP3 in the gills of euryhaline milkfish is still unknown. The aim of this study was to investigate the expression and localization of AQP3 in the gills of euryhaline milkfish to contribute to our understanding of the physiological role and localization of AQP3 in fish. The AQP3 sequence was found in the milkfish next-generation sequencing (NGS) database and is mainly distributed in the gills of freshwater (FW)-acclimated milkfish. Under hypoosmotic and hyperosmotic stress, the osmolality of milkfish immediately shifted, similar to the aqp3 gene expression. Moreover, the abundance of AQP3 protein significantly decreased 3 h after transferring milkfish from FW to seawater (SW). However, there was no change within 7 days when the milkfish experienced hypoosmotic stress. Moreover, double immunofluorescence staining of milkfish gills showed that AQP3 colocalized with Na /K ATPase at the basolateral membrane of ionocytes. These results combined indicate that milkfish have a strong osmoregulation ability under acute osmotic stress because of the quick shift in the gene and protein expression of AQP3 in their gills.

摘要

虱目鱼(Chanos chanos)是东南亚国家重要的广盐性鱼类,能够耐受广泛的盐度变化。先前的研究表明,虱目鱼在渗透胁迫下具有很强的离子调节和生存能力。除了离子调节外,广盐性硬骨鱼类在环境盐度变化时的水稳态也很重要。水通道蛋白(AQP)是鱼类中重要的水通道,不同的 AQP 可以将水从体内输入或输出。AQP3 是 AQP 通道之一,其在广盐性虱目鱼鳃中的功能尚不清楚。本研究旨在探讨 AQP3 在广盐性虱目鱼鳃中的表达和定位,以帮助我们了解 AQP3 在鱼类中的生理作用和定位。AQP3 序列在虱目鱼下一代测序(NGS)数据库中被发现,主要分布在淡水(FW)驯化虱目鱼的鳃中。在低渗和高渗胁迫下,虱目鱼的渗透压立即发生变化,类似于 aqp3 基因的表达。此外,在将虱目鱼从 FW 转移到海水(SW)后 3 小时,AQP3 蛋白的丰度显著下降。然而,在虱目鱼经历低渗胁迫的 7 天内,没有变化。此外,虱目鱼鳃的双重免疫荧光染色显示,AQP3 与 Na+/K+ATPase 在离子细胞的基底外侧膜共定位。这些结果表明,虱目鱼在急性渗透胁迫下具有很强的渗透压调节能力,因为其鳃中 AQP3 的基因和蛋白表达迅速发生变化。

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