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Effects of chemical speciation in growth media on the toxicity of mercury(II).

机译:生长介质中化学形态对汞(II)毒性的影响。

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The toxicity of metals, including mercury, is expressed differently in different media, and the addition of soluble organics to the growth medium can have a significant impact on bioassay results. Although the effect of medium composition on metal toxicity is generally attributed to its effect on metal speciation (i.e., the chemical form in which the metal occurs), the importance of individual metal-ligand species remains largely unclear. Here, we report the results of a study that investigated, both experimentally and from a modeling perspective, the effects of complex soluble organic supplements on the acute toxicity (i.e., 50% inhibitory concentration [IC50]) of mercury to a Pseudomonas fluorescens isolate in chemically well-defined synthetic growth media (M-IIX). The media consisted of a basal inorganic salts medium supplemented with glycerol (0.1%, vol/vol) and a variety of common protein hydrolysates (0.1%, vol/vol), i.e., Difco beef extract (X = B), Casamino Acids (X = C), peptone (X = P), soytone (X = S), tryptone (X = T), and yeast extract (X = Y). These were analyzed to obtain cation, anion, and amino acid profiles and the results were used to compute the aqueous speciation of Hg(II) in the media. Respirometric bioassays were performed and IC50s were calculated. Medium components varied significantly in their effects on the acute toxicity of Hg(II) to the P. fluorescens isolate. IC50s ranged from 1.48 to 14.54 micrograms of Hg ml-1, and the acute toxicity of Hg(II) in the different media decreased in the order M-IIC M-IIP > M-IIB M-IIT > M-IIS > M-IIY.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:金属(包括汞)的毒性在不同的培养基中表达方式不同,并且向生长培养基中添加可溶性有机物可能会对生物测定结果产生重大影响。尽管介质组成对金属毒性的影响通常归因于其对金属形态的影响(即,金属发生的化学形式),但单个金属配体物种的重要性仍不清楚。在这里,我们报告了一项研究的结果,该研究从实验和建模角度进行了研究,研究了复杂的可溶性有机补充剂对汞对荧光假单胞菌分离物的急性毒性(即50%抑制浓度[IC50])的影响。化学定义明确的合成生长培养基(M-IIX)。培养基由基础无机盐培养基和甘油(0.1%,体积/体积)和多种常见蛋白水解物(0.1%,体积/体积)组成,即Difco牛肉提取物(X = B),酪蛋白酸( X = C),蛋白ept(X = P),大豆蛋白(X = S),胰蛋白((X = T)和酵母提取物(X = Y)。分析这些以获得阳离子,阴离子和氨基酸谱,并将结果用于计算培养基中Hg(II)的水形态。进行了呼吸测定生物测定并计算了IC50。培养基成分对Hg(II)对荧光假单胞菌分离物的急性毒性的影响差异很大。 Hg ml-1的IC50范围为1.48至14.54微克,并且不同介质中Hg(II)的急性毒性以M-IIC M-IIP> M-IIB M-IIT> M- IIS > M-IIY。(摘要以250字截断)

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