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磷在普通小球藻(一种淡水绿藻)对砷酸盐代谢中的作用。

The role of phosphorus in the metabolism of arsenate by a freshwater green alga, Chlorella vulgaris.

作者信息

Baker Josh, Wallschläger Dirk

机构信息

Trent University, Environmental and Life Sciences Graduate Program, 1600 West Bank Dr, Peterborough, ON, K9L 0G2, Canada.

School of the Environment, Department of Chemistry and Water Quality Centre, Trent University, 1600 West Bank Dr, Peterborough, ON, K9L 0G2, Canada.

出版信息

J Environ Sci (China). 2016 Nov;49:169-178. doi: 10.1016/j.jes.2016.10.002. Epub 2016 Oct 19.

Abstract

A freshwater microalga, Chlorella vulgaris, was grown in the presence of varying phosphate concentrations (<10-500μg/L P) and environmentally realistic concentrations of arsenate (As(V)) (5-50μg/L As). Arsenic speciation in the culture medium and total cellular arsenic were measured using AEC-ICP-MS and ICP-DRC-MS, respectively, to determine arsenic biotransformation and uptake in the various phosphorus scenarios. At high phosphate concentration in the culture medium, >100μg/L P, the uptake and biotransformation of As(V) was minimal and dimethylarsonate (DMAs(V)) was the dominant metabolite excreted by C. vulgaris, albeit at relatively low concentrations. At common environmental P concentrations, 0-50μg/L P, the uptake and biotransformation of As(V) increased. At these higher As-uptake levels, arsenite (As(III)) was the predominant metabolite excreted from the cell. The concentrations of As(III) in these low P conditions were much higher than the concentrations of methylated arsenicals observed at the various P concentrations studied. The switchover threshold between the (small) methylation and (large) reduction of As(V) occurred around a cellular As concentration of 1fg/cell. The observed nearly quantitative conversion of As(V) to As(III) under low phosphate conditions indicates the importance of As(V) bio-reduction at common freshwater P concentrations. These findings on the influence of phosphorus on arsenic uptake, accumulation and excretion are discussed in relation to previously published research. The impact that the two scenarios of As(V) metabolism, As(III) excretion at high As(V)-uptake and methylarsenical excretion at low As(V)-uptake, have on freshwater arsenic speciation is discussed.

摘要

一种淡水微藻——普通小球藻(Chlorella vulgaris),在不同磷酸盐浓度(<10 - 500μg/L P)以及环境实际浓度的砷酸盐(As(V))(5 - 50μg/L As)存在的条件下进行培养。分别使用AEC - ICP - MS和ICP - DRC - MS测定培养基中的砷形态和细胞总砷含量,以确定在不同磷环境下砷的生物转化和吸收情况。在培养基中磷酸盐浓度较高(>100μg/L P)时,As(V)的吸收和生物转化极少,二甲基砷酸(DMAs(V))是普通小球藻排出的主要代谢产物,不过其浓度相对较低。在常见的环境磷浓度(0 - 50μg/L P)下,As(V)的吸收和生物转化增加。在这些较高的砷吸收水平下,亚砷酸盐(As(III))是从细胞排出的主要代谢产物。在这些低磷条件下,As(III)的浓度远高于在所研究的不同磷浓度下观察到的甲基化砷化合物的浓度。As(V)(少量)甲基化和(大量)还原之间的转换阈值出现在细胞砷浓度约为1fg/细胞时。在低磷酸盐条件下观察到As(V)几乎定量转化为As(III)这一现象,表明在常见淡水磷浓度下As(V)生物还原的重要性。结合先前发表的研究,讨论了这些关于磷对砷吸收、积累和排泄影响的发现。还讨论了As(V)代谢的两种情况,即在高As(V)吸收时As(III)排泄和在低As(V)吸收时甲基砷化合物排泄对淡水砷形态的影响。

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