Hwang Pung-Pung, Lee Tsung-Han
Institute of Cellular and Organismic Biology, Academia Sinica, Nankang, Taipei, 115, Taiwan.
Comp Biochem Physiol A Mol Integr Physiol. 2007 Nov;148(3):479-97. doi: 10.1016/j.cbpa.2007.06.416. Epub 2007 Jun 27.
Compared to terrestrial animals, fish have to cope with more-challenging osmotic and ionic gradients from aquatic environments with diverse salinities, ion compositions, and pH values. Gills, a unique and highly studied organ in research on fish osmoregulation and ionoregulation, provide an excellent model to study the regulatory mechanisms of ion transport. The present review introduces and discusses some recent advances in relevant issues of teleost gill ion transport and functions of gill ionocytes. Based on accumulating evidence, a conclusive model of NaCl secretion in gills of euryhaline teleosts has been established. Interpretations of results of studies on freshwater fish gill Na+/Cl- uptake mechanisms are still being debated compared with those for NaCl secretion. Current models for Na+/Cl- uptake are proposed based on studies in traditionally used model species. Many reported inconsistencies are claimed to be due to differences among species, various experimental designs, or acclimation conditions. Having the benefit of advanced techniques in molecular/cellular biology, functional genomics, and model animals, several new notions have recently been raised concerning relevant issues of Na+/Cl- uptake pathways. Several new windows have been opened particularly in terms of molecular mechanisms of ionocyte differentiation and energy metabolite transport between gill cells during environmental challenge.
与陆生动物相比,鱼类必须应对来自盐度、离子组成和pH值各异的水生环境中更具挑战性的渗透和离子梯度。鳃是鱼类渗透调节和离子调节研究中一个独特且研究深入的器官,为研究离子转运的调节机制提供了一个绝佳模型。本综述介绍并讨论了硬骨鱼鳃离子转运及鳃离子细胞功能相关问题的一些最新进展。基于越来越多的证据,广盐性硬骨鱼鳃中NaCl分泌的确定性模型已经建立。与NaCl分泌的研究结果相比,淡水鱼鳃Na⁺/Cl⁻摄取机制的研究结果解读仍存在争议。目前关于Na⁺/Cl⁻摄取的模型是基于对传统使用的模式物种的研究提出的。许多报道的不一致之处据称是由于物种差异、各种实验设计或驯化条件造成的。受益于分子/细胞生物学、功能基因组学和模式动物方面的先进技术,最近在Na⁺/Cl⁻摄取途径的相关问题上提出了一些新观点。特别是在环境挑战期间鳃细胞之间离子细胞分化和能量代谢物转运的分子机制方面,已经打开了几个新的窗口。