Piñeros MA, Shaff JE, Kochian LV
United States Plant, Soil, and Nutrition Laboratory, United States Department of Agriculture-Agricultural Research Service, Cornell University, Ithaca, New York 14853.
Plant Physiol. 1998 Apr 1;116(4):1393-401. doi: 10.1104/pp.116.4.1393.
A Cd2+-selective vibrating microelectrode was constructed using a neutral carrier-based Cd ionophore to investigate ion-transport processes along the roots of wheat (Triticum aestivum L.) and two species of Thlaspi, one a Zn/Cd hyperaccumulator and the other a related nonaccumulator. In simple Cd(NO3)2 solutions, the electrode exhibited a Nernstian response in solutions with Cd2+ activities as low as 50 nm. Addition of Ca2+ to the calibration solutions did not influence the slope of the calibration curve but reduced the detection limit to a solution activity of 1 µm Cd2+. Addition of high concentrations of K+ and Mg2+ to the calibration solution to mimic the ionic composition of the cytoplasm affected neither the slope nor the sensitivity of the electrode, demonstrating the pH-insensitive electrode's potential for intracellular investigations. The electrode was assayed for selectivity and was shown to be at least 1000 times more selective for Cd2+ than for any of those potentially interfering ions tested. Flux measurements along the roots of the two Thlaspi species showed no differences in the pattern or the magnitude of Cd2+ uptake within the time frame considered. The Cd2+-selective microelectrode will permit detailed investigations of heavy-metal ion transport in plant roots, especially in the area of phytoremediation.
利用基于中性载体的镉离子载体构建了一种Cd2+选择性振动微电极,以研究沿小麦(Triticum aestivum L.)以及两种遏蓝菜属植物根系的离子运输过程,其中一种是锌/镉超积累植物,另一种是相关的非积累植物。在简单的Cd(NO3)2溶液中,该电极在Cd2+活度低至50 nm的溶液中呈现能斯特响应。在校准溶液中添加Ca2+不会影响校准曲线的斜率,但会将检测限降低至1 µm Cd2+的溶液活度。在校准溶液中添加高浓度的K+和Mg2+以模拟细胞质的离子组成,既不影响电极的斜率也不影响其灵敏度,这表明该对pH不敏感的电极具有用于细胞内研究的潜力。对该电极进行了选择性测定,结果表明其对Cd2+的选择性比对所测试的任何一种潜在干扰离子至少高1000倍。对两种遏蓝菜属植物根系的通量测量结果显示,在所考虑的时间范围内,Cd2+吸收的模式和幅度没有差异。这种Cd2+选择性微电极将有助于详细研究植物根系中的重金属离子运输,特别是在植物修复领域。