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天然溶解有机质可使 Cd 移动,但不会影响绿藻拟卡氏藻(Korschikov)在树脂缓冲溶液中的 Cd 摄取。

Natural dissolved organic matter mobilizes Cd but does not affect the Cd uptake by the green algae Pseudokirchneriella subcapitata (Korschikov) in resin buffered solutions.

机构信息

Division Soil and Water Management, Department of Earth and Environmental Science, KU Leuven, Belgium.

出版信息

Aquat Toxicol. 2014 Sep;154:80-6. doi: 10.1016/j.aquatox.2014.05.009. Epub 2014 May 19.

DOI:10.1016/j.aquatox.2014.05.009
PMID:24874007
Abstract

Natural dissolved organic matter (DOM) can have contrasting effects on metal bioaccumulation in algae because of complexation reactions that reduce free metal ion concentrations and because of DOM adsorption to algal surfaces which promote metal adsorption. This study was set up to reveal the role of different natural DOM samples on cadmium (Cd) uptake by the green algae Pseudokirchneriella subcapitata (Korschikov). Six different DOM samples were collected from natural freshwater systems and isolated by reverse osmosis. In addition, one (13)C enriched DOM sample was isolated from soil to trace DOM adsorption to algae. Algae were exposed to standardized solutions with or without these DOM samples, each exposed at equal DOM concentrations and at equal non-toxic Cd(2+) activity (∼4 nM) that was buffered with a resin. The DOM increased total dissolved Cd by factors 3-16 due to complexation reactions at equal Cd(2+) activity. In contrast, the Cd uptake was unaffected by DOM or increased maximally 1.6 fold ((13)C enriched DOM). The (13)C analysis revealed that maximally 6% of algal C was derived from DOM and that this can explain the small increase in biomass Cd. It is concluded that free Cd(2+) and not DOM-complexed Cd is the main bioavailable form of Cd when solution Cd(2+) is well buffered.

摘要

天然溶解有机物质(DOM)可能会对藻类中金属的生物积累产生相反的影响,这是由于络合反应降低了游离金属离子浓度,以及 DOM 被藻类表面吸附从而促进了金属的吸附。本研究旨在揭示不同天然 DOM 样品对绿藻 Pseudokirchneriella subcapitata(Korschikov)摄取镉(Cd)的作用。从天然淡水系统中采集了 6 种不同的 DOM 样品,并通过反渗透法进行了分离。此外,还从土壤中分离出一种(13)C 富集的 DOM 样品,以追踪 DOM 对藻类的吸附。将藻类暴露于含有或不含有这些 DOM 样品的标准溶液中,每种样品均在相等的 DOM 浓度和相等的非毒性 Cd(2+)活性(约 4 nM)下进行暴露,Cd(2+)活性由树脂缓冲。由于络合反应,DOM 将总溶解 Cd 增加了 3-16 倍。相比之下,DOM 对 Cd 摄取没有影响,或最大增加了 1.6 倍((13)C 富集的 DOM)。(13)C 分析表明,藻类中最多有 6%的 C 来自 DOM,这可以解释生物量 Cd 的少量增加。结论是,当溶液中的 Cd(2+)得到良好缓冲时,游离的 Cd(2+)而不是与 DOM 络合的 Cd 是 Cd 的主要生物可利用形式。

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