首页> 外文期刊>Journal of Comparative Physiology B >The effects of gill remodeling on transepithelial sodium fluxes and the distribution of presumptive sodium-transporting ionocytes in goldfish (Carassius auratus)
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The effects of gill remodeling on transepithelial sodium fluxes and the distribution of presumptive sodium-transporting ionocytes in goldfish (Carassius auratus)

机译:of重塑对金鱼(Car鱼)中跨上皮钠通量和推测的钠转运离子细胞分布的影响

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Goldfish, Carassius auratus, adaptively remodel their gills in response to changes in ambient oxygen and temperature, altering the functional lamellar surface area to balance the opposing requirements for respiration and osmoregulation. In this study, the effects of thermal- and hypoxia-mediated gill remodeling on branchial Na+ fluxes and the distribution of putative Na+-transporting ionocytes in goldfish were assessed. When assessed either in vitro (isolated gill arches) or in vivo at a common water temperature, the presence of an interlamellar cell mass (ILCM) in fish acclimated to 7°C clearly decreased Na+ efflux across the gill relative to fish maintained at 25°C and lacking an ILCM. However, loss of the ILCM in 7°C-acclimated fish exposed to hypoxia led to a decrease in Na+ efflux (assessed under hypoxic conditions) despite the apparent large increases in functional lamellar surface area. Goldfish possessing an ILCM were able to sustain Na+ uptake, albeit at a lower rate matched to efflux, owing to the re-distribution of ionocytes expressing genes thought to be involved in Na+ uptake [Na+/H+ exchanger isoform 3 (NHE3) and V- type H+-ATPase] to the edge of the ILCM where they can establish contact with the surrounding environment. NHE-expressing cells co-localized with Na+/K+-ATPase expression, suggesting a role for NHE in Na+-uptake in the goldfish. Implications of the ILCM on ion fluxes in the goldfish are discussed.
机译:金鱼(Carassius auratus)可根据环境氧气和温度的变化适应性地重塑g,改变功能性片状表面积,以平衡呼吸和渗透调节的相对要求。本研究评估了热和低氧介导的g重塑对金鱼中分支Na +通量和假定的Na +迁移离子细胞分布的影响。在体外(孤立的g弓)或在普通水温下进行体内评估时,适应于7°C的鱼中存在层间细胞团(ILCM)明显降低了decreased相对于鱼的Na + 外流保持在25°C且没有ILCM。然而,尽管功能性板层表面积明显增加,但是在暴露于低氧条件下适应7°C的鱼类中ILCM的损失导致Na +流出减少(在低氧条件下评估)。拥有ILCM的金鱼能够维持Na +吸收,尽管与外排率匹配的速率较低,这是由于离子细胞重新分布了被认为与Na +吸收有关的基因[Na + / H + 交换异构体3(NHE3)和V型H + -ATPase]到ILCM的边缘,在那里它们可以与周围环境建立联系。表达NHE的细胞与Na + / K + -ATPase表达共定位,提示NHE在金鱼的Na + 摄取中具有作用。讨论了ILCM对金鱼中离子通量的影响。

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