Mechanisms of arsenic hyperaccumulation in Pteris species: root As influx and translocation

被引:0
|
作者
Charissa Y. Poynton
Jianwei W. Huang
Michael J. Blaylock
Leon V. Kochian
Mark P. Elless
机构
[1] Edenspace Systems Corporation,US Plant, Soil & Nutrition Laboratory, USDA
[2] Cornell University,ARS
[3] Lockheed Martin/REAC,undefined
来源
Planta | 2004年 / 219卷
关键词
Arsenate; Arsenite; Membrane transport; Phosphate; Phytoremediation;
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中图分类号
学科分类号
摘要
Several species of fern from the Pteris genus are able to accumulate extremely high concentrations of arsenic (As) in the fronds. We have conducted short-term unidirectional As influx and translocation experiments with 73As-radiolabeled arsenate, and found that the concentration-dependent influx of arsenate into roots was significantly larger in two of these As-hyperaccumulating species, Pteris vittata (L.) and Pteris cretica cv. Mayii (L.), than in Nephrolepis exaltata (L.), a non-accumulating fern. The arsenate influx could be described by Michaelis-Menten kinetics and the kinetic parameter Km was found to be lower in the Pteris species, indicating higher affinity of the transport protein for arsenate. Quantitative analysis of kinetic parameters showed that phosphate inhibited arsenate influx in a directly competitive manner, consistent with the hypothesis that arsenate enters plant roots on a phosphate-transport protein. The significantly augmented translocation of arsenic to the shoots that was seen in these As hyperaccumulator species is proposed to be due to a combination of the increased root influx and also decreased sequestration of As in the roots, as a larger fraction of As could be extracted from roots of the Pteris species than from roots of N. exaltata. This leaves a larger pool of mobile As available for translocation to the shoot, probably predominantly as arsenite.
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页码:1080 / 1088
页数:8
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