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首页> 外文期刊>The Journal of Experimental Biology >Physiological characterisation of a pH- and calcium-dependent sodium uptake mechanism in the freshwater crustacean, Daphnia magna
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Physiological characterisation of a pH- and calcium-dependent sodium uptake mechanism in the freshwater crustacean, Daphnia magna

机译:淡水甲壳类水蚤(Daphnia magna)的pH和钙依赖性钠吸收机制的生理特征

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Daphnia are highly sensitive to sodium metabolism disruption caused by aquatic acidification and ionoregulatory toxicants, due to their finely balanced ion homeostasis. Nine different water chemistries of varying pH (4, 6 and 8) and calcium concentration (0, 0.5 and 1 mmol l(-1)) were used to delineate the mechanism of sodium influx in Daphnia magna. Lowering water pH severely inhibited sodium influx when calcium concentration was high, but transport kinetic analysis revealed a stimulated sodium influx capacity (J(max)) when calcium was absent. At low pH increasing water calcium levels decreased J(max) and raised K(m) (decreased sodium influx affinity), while at high pH the opposite pattern was observed (elevated J(max) and reduced K(m)). These effects on sodium influx were mirrored by changes in whole body sodium levels. Further examination of the effect of calcium on sodium influx showed a severe inhibition of sodium uptake by 100 micromol l(-1) calcium gluconate at both low (50 micromol l(-1)) and high (1000 micromol l(-1)) sodium concentrations. At high sodium concentrations, stimulated sodium influx was noted with elevated calcium levels. These results, in addition to data showing amiloride inhibition of sodium influx (K(i)=180 micromol l(-1)), suggest a mechanism of sodium influx in Daphnia magna that involves the electrogenic 2Na(+)/1H(+) exchanger.
机译:水蚤由于离子平衡良好,对水生酸化和电离性有毒物质引起的钠代谢破坏高度敏感。使用九种不同的pH值(4、6和8)和钙浓度(0、0.5和1 mmol l(-1)的水化学)来描述大型蚤中钠流入的机理。当钙浓度高时,降低水的pH值会严重抑制钠的流入,但是运输动力学分析表明,当钙不存在时,钠的吸收能力会增加(J(max))。在低pH值下,水钙含量降低J(max)并增加K(m)(钠流入亲和力降低),而在高pH值下,观察到相反的模式(J(max)升高和K(m)降低)。这些对钠流入的影响反映在全身钠水平的变化上。钙对钠流入的影响的进一步检查显示,在低(50 micromol l(-1)和高(1000 micromol l(-1))时,100 micromol l(-1)葡萄糖酸钙均会严重抑制钠的吸收。钠浓度。在高钠浓度下,发现钙离子水平升高会刺激钠流入。这些结果,除了显示阿米洛利抑制钠流入的数据(K(i)= 180 micromol l(-1))以外,还暗示了大型蚤中钠流入的机制涉及电致2Na(+)/ 1H(+)交换器。

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