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本文引用的文献

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Heavy metal accumulation and tolerance in British populations of the metallophyte Thlaspi caerulescens J. & C. Presl (Brassicaceae).英国金属植物天蓝遏蓝菜(十字花科)种群中的重金属积累与耐受性
New Phytol. 1994 May;127(1):61-68. doi: 10.1111/j.1469-8137.1994.tb04259.x.
2
Use of an extracellular, ion-selective, vibrating microelectrode system for the quantification of K(+), H (+), and Ca (2+) fluxes in maize roots and maize suspension cells.利用细胞外离子选择性振动微电极系统定量测定玉米根和玉米悬浮细胞中的 K(+)、H (+)和 Ca (2+)通量。
Planta. 1992 Nov;188(4):601-10. doi: 10.1007/BF00197055.
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Aluminum effects on the kinetics of calcium uptake into cells of the wheat root apex : Quantification of calcium fluxes using a calcium-selective vibrating microelectrode.铝对小麦根尖细胞钙摄取动力学的影响:利用钙选择性振动微电极定量测定钙通量。
Planta. 1992 Oct;188(3):414-21. doi: 10.1007/BF00192809.
4
Zinc and Cadmium Uptake by Hyperaccumulator Thlaspi caerulescens and Metal Tolerant Silene vulgaris Grown on Sludge-Amended Soils.生长在污泥改良土壤上的超积累植物天蓝遏蓝菜和耐金属植物普通麦瓶草对锌和镉的吸收
Environ Sci Technol. 1995 Jun 1;29(6):1581-5. doi: 10.1021/es00006a022.
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Aluminum Toxicity in Roots : Correlation among Ionic Currents, Ion Fluxes, and Root Elongation in Aluminum-Sensitive and Aluminum-Tolerant Wheat Cultivars.根系铝毒害:铝敏感和耐铝小麦品种中离子电流、离子通量与根伸长的相关性。
Plant Physiol. 1992 Jul;99(3):1193-200. doi: 10.1104/pp.99.3.1193.
6
Measurement of Net Fluxes of Ammonium and Nitrate at the Surface of Barley Roots Using Ion-Selective Microelectrodes : II. Patterns of Uptake Along the Root Axis and Evaluation of the Microelectrode Flux Estimation Technique.利用离子选择性微电极测量大麦根表面铵和硝酸盐的净通量:II. 沿根轴吸收的模式和微电极通量估算技术的评价。
Plant Physiol. 1992 Jun;99(2):734-47. doi: 10.1104/pp.99.2.734.
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Aluminum effects on calcium fluxes at the root apex of aluminum-tolerant and aluminum-sensitive wheat cultivars.铝胁迫耐受和敏感小麦品种根尖钙流的铝效应。
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Evidence for Cotransport of Nitrate and Protons in Maize Roots : II. Measurement of NO(3) and H Fluxes with Ion-Selective Microelectrodes.玉米根中硝酸盐与质子共转运的证据:II. 用离子选择性微电极测量NO₃⁻和H⁺通量
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9
Measurement of net fluxes of ammonium and nitrate at the surface of barley roots using ion-selective microelectrodes.使用离子选择性微电极测量大麦根表面铵和硝酸盐的净通量。
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10
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用于测量遏蓝菜属植物和小麦根系中镉通量的镉选择性微电极的研制、表征及应用

Development, Characterization, and Application of a Cadmium-Selective Microelectrode for the Measurement of Cadmium Fluxes in Roots of Thlaspi Species and Wheat.

作者信息

Piñeros MA, Shaff JE, Kochian LV

机构信息

United States Plant, Soil, and Nutrition Laboratory, United States Department of Agriculture-Agricultural Research Service, Cornell University, Ithaca, New York 14853.

出版信息

Plant Physiol. 1998 Apr 1;116(4):1393-401. doi: 10.1104/pp.116.4.1393.

DOI:10.1104/pp.116.4.1393
PMID:9536057
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC35047/
Abstract

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.

摘要

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。