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镉在水稻根系中的积累受到镉的可用性、螯合和转运的影响。

Cadmium retention in rice roots is influenced by cadmium availability, chelation and translocation.

机构信息

Dipartimento di Produzione Vegetale, Università degli Studi di Milano, 20133 Milan, Italy.

出版信息

Plant Cell Environ. 2011 Jun;34(6):994-1008. doi: 10.1111/j.1365-3040.2011.02299.x. Epub 2011 Apr 7.

Abstract

Analysis of rice plants exposed to a broad range of relatively low and environmentally realistic Cd concentrations showed that the root capacity to retain Cd ions rose from 49 to 79%, corresponding to increases in the external Cd²+ concentration in the 0.01-1 µM range. Fractioning of Cd ions retained by roots revealed that different events along the metal sequestration pathway (i.e. chelation by thiols, vacuolar compartmentalization, adsorption) contributed to Cd immobilization in the roots. However, large amounts of Cd ions (around 24% of the total amount) predictable as potentially mobile were still found in all conditions, while the amount of Cd ions loaded in the xylem seemed to have already reached saturation at 0.1 µM Cd²+, suggesting that Cd translocation may also play an indirect role in determining Cd root retention, especially at the highest external concentrations. In silico search and preliminary analyses in yeast suggest OsHMA2 as a good candidate for the control of Cd xylem loading in rice. Taken as a whole, data indicate Cd chelation, compartmentalization, adsorption and translocation processes as components of a complex 'firewall system' which acts in limiting Cd translocation from the root to the shoot and which reaches different equilibrium positions depending on Cd external concentration.

摘要

对暴露于广泛的相对较低且环境现实的 Cd 浓度的水稻植株进行分析表明,根保留 Cd 离子的能力从 49%上升到 79%,这对应于外部 Cd²+浓度在 0.01-1 µM 范围内的增加。通过对根系保留的 Cd 离子进行分级,发现沿金属螯合途径的不同事件(即巯基螯合、液泡区隔化、吸附)有助于 Cd 在根系中的固定。然而,在所有条件下,仍有大量(约 24%)的 Cd 离子可预测为潜在的可移动,而在 0.1 µM Cd²+时,Cd 离子加载到木质部中的量似乎已经达到饱和,这表明 Cd 转运也可能在决定 Cd 根保留方面发挥间接作用,尤其是在最高的外部浓度下。在酵母中的计算机搜索和初步分析表明,OsHMA2 是控制水稻 Cd 木质部加载的一个很好的候选基因。总的来说,数据表明 Cd 螯合、区隔化、吸附和转运过程是一种复杂的“防火墙系统”的组成部分,该系统在限制 Cd 从根部向地上部转运方面发挥作用,并且根据 Cd 外部浓度达到不同的平衡位置。

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