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Excretion of cesium and rubidium via the branchial potassium-transporting pathway in Mozambique tilapia

机译:莫桑比克罗非鱼通过钾的转移途径排泄铯和rub

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Using an insolubilization technique in combination with element analysis, we examined the possible excretion of Cs+ and Rb+, both known to be biochemical analogs of K+, through the K+-transporting pathway in the gills of seawater-adapted Mozambique tilapia. To detect ion excretion from gills infused with Rb+ or Cs+, the isolated gills were treated with sodium tetraphenylborate, which reacts not only with K+ but also with Rb+ and Cs+ to form insoluble precipitates. The precipitates were formed specifically at the apical openings of mitochondrion-rich (MR) cells, which are responsible for K+ excretion in marine teleosts. Elemental analysis showed that Cs and Rb were distributed at the area of precipitates on the gill surface, and that these elements were colocalized with K. Our findings indicate that the gills eliminate unnecessary Cs+ and Rb+ in the body fluid, presumably through the same pathway as the K+ excretion in MR cells.
机译:使用不溶化技术与元素分析相结合,我们研究了在适应海水的莫桑比克罗非鱼through中通过K +转运途径排泄的Cs +和Rb +(可能是K +的生化类似物)的可能排泄。为了检测注入Rb +或Cs +的腮中的离子排泄,用四苯基硼酸钠处理分离出的腮,四苯硼酸钠不仅与K +反应,而且与Rb +和Cs +反应形成不溶性沉淀物。沉淀物是在富含线粒体(MR)的细胞的顶端专门形成的,这些细胞负责海洋硬骨鱼的K +排泄。元素分析表明,Cs和Rb分布在g表面的沉淀物区域,并且这些元素与K共存。我们的发现表明,ill可能消除了体液中不必要的Cs +和Rb +,大概是通过与MR细胞中的K +排泄。

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