Toxicology Centre, University of Saskatchewan, Saskatoon, SK S7N 5B3, Canada.
Fish Physiol Biochem. 2013 Apr;39(2):363-72. doi: 10.1007/s10695-012-9705-2. Epub 2012 Aug 15.
Diet is the primary source of iron (Fe) for freshwater fish, and the absorption of Fe is believed to occur via the Nramp family of divalent metal transporters (also called DMT1). Presently, the homeostatic regulation of dietary Fe absorption in fish is poorly understood. This study examined the gastrointestinal mRNA expression of two Nramp isoforms, Nramp-β and Nramp-γ, in the freshwater rainbow trout (Oncorhynchus mykiss), following exposure to elevated dietary Fe [1,256 mg Fe/kg food vs. 136 mg Fe/kg food (control)] for 14 days. The physiological performance, plasma Fe status and tissue-specific accumulation of Fe were also evaluated. In general, the mRNA expression level of Nramp was higher in the intestine relative to the stomach. Interestingly, fish fed on a high-Fe diet exhibited a significant induction in Nramp expression after 7 days, followed by a decrease to the level observed in control fish on day 14. The increase in Nramp expression correlated with the elevated gastrointestinal and plasma Fe concentrations. However, the hepatic Fe concentration remained unchanged during the entire exposure period, indicating strong homeostatic regulation of hepatic Fe level in fish. Fish appeared to handle increased systemic Fe level by elevating the plasma transferrin level, thereby enhancing the Fe-binding capacity in the plasma. Overall, our study provides new interesting insights into the homeostatic regulation of dietary Fe uptake and handling in freshwater fish.
饮食是淡水鱼铁(Fe)的主要来源,Fe 的吸收被认为是通过二价金属转运蛋白(也称为 DMT1)家族的 Nramp 来实现的。目前,鱼类对膳食 Fe 吸收的体内平衡调节还知之甚少。本研究检测了淡水虹鳟(Oncorhynchus mykiss)在 14 天内暴露于高膳食 Fe [1,256 mg Fe/kg 食物与 136 mg Fe/kg 食物(对照)]后,两种 Nramp 同工型 Nramp-β和 Nramp-γ的胃肠道 mRNA 表达。还评估了生理性能、血浆 Fe 状态和组织特异性 Fe 积累。一般来说,Nramp 的 mRNA 表达水平在肠道中高于胃。有趣的是,高 Fe 饮食组在第 7 天表现出 Nramp 表达显著增加,然后在第 14 天降至对照鱼的水平。Nramp 表达的增加与胃肠道和血浆 Fe 浓度的升高相关。然而,肝 Fe 浓度在整个暴露期间保持不变,表明鱼类对肝 Fe 水平具有强烈的体内平衡调节。鱼类似乎通过提高血浆转铁蛋白水平来处理增加的系统性 Fe 水平,从而增强血浆中的 Fe 结合能力。总体而言,本研究为淡水鱼膳食 Fe 吸收和处理的体内平衡调节提供了新的有趣见解。