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利用田口实验设计方法研究环境因素对铜绿微囊藻中砷酸盐生物转化和释放的影响。

Impacts of environmental factors on arsenate biotransformation and release in Microcystis aeruginosa using the Taguchi experimental design approach.

机构信息

Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, 361021, China; School of Chemistry and Environment, Fujian Province Key Laboratory of Modern Analytical Science and Separation Technology, Minnan Normal University, Zhangzhou, 363000, China; Stockbridge School of Agriculture, University of Massachusetts, Amherst, MA, 01003, United States.

Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, 361021, China; Stockbridge School of Agriculture, University of Massachusetts, Amherst, MA, 01003, United States.

出版信息

Water Res. 2017 Jul 1;118:167-176. doi: 10.1016/j.watres.2017.04.036. Epub 2017 Apr 18.

Abstract

Very limited information is available on how and to what extent environmental factors influence arsenic (As) biotransformation and release in freshwater algae. These factors include concentrations of arsenate (As(V)), dissolved inorganic nitrogen (N), phosphate (P), and ambient pH. This study conducted a series of experiments using Taguchi methods to determine optimum conditions for As biotransformation. We assessed principal effective factors of As(V), N, P, and pH and determined that As biotransformation and release actuate at 10.0 μM As(V) in dead alga cells, the As efflux ratio and organic As efflux content actuate at 1.0 mg/L P, algal growth and intracellular arsenite (As(III)) content actuate at 10.0 mg/L N, and the total sum of As(III) efflux from dead alga cells actuates at a pH level of 10. Moreover, N is the critical component for As(V) biotransformation in M. aeruginosa, specifically for As(III) transformation, because N can accelerate algal growth, subsequently improving As(III) accumulation and its efflux, which results in an As(V) to As(III) reduction. Furthermore, low P concentrations in combination with high N concentrations promote As accumulation. Following As(V), P was the primary impacting factor for As accumulation. In addition, small amounts of As accumulation under low concentrations of As and high P were securely stored in living algal cells and were easily released after cell death. Results from this study will help to assess practical applications and the overall control of key environmental factors, particularly those associated with algal bioremediation in As polluted water.

摘要

关于环境因素如何以及在何种程度上影响淡水藻类中砷(As)的生物转化和释放,目前相关信息非常有限。这些因素包括砷酸盐(As(V))、溶解无机氮(N)、磷酸盐(P)和环境 pH 值的浓度。本研究采用田口方法进行了一系列实验,以确定 As 生物转化的最佳条件。我们评估了 As(V)、N、P 和 pH 的主要有效因素,并确定在死藻细胞中,As 的生物转化和释放作用于 10.0 μM 的 As(V),砷的外排率和有机砷的外排量作用于 1.0 mg/L 的 P,藻类的生长和细胞内亚砷酸盐(As(III))含量作用于 10.0 mg/L 的 N,以及死藻细胞中总砷(III)的外排量作用于 pH 值为 10。此外,N 是铜绿微囊藻中 As(V)生物转化的关键成分,特别是对于 As(III)的转化,因为 N 可以加速藻类的生长,从而提高 As(III)的积累和外排量,导致 As(V)向 As(III)的还原。此外,低浓度的 P 与高浓度的 N 结合可以促进 As 的积累。继 As(V)之后,P 是影响 As 积累的主要因素。此外,在低浓度的 As 和高浓度的 P 下,少量的 As 积累被安全地储存在活藻细胞中,并且在细胞死亡后很容易被释放。本研究的结果将有助于评估实际应用和关键环境因素的整体控制,特别是与受污染水中藻类生物修复相关的因素。

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