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Complex metal mixture reduces apparent protein carbonylation in a tolerant aquatic macroinvertebrate, Arctopsyche grandis.

机译:复杂的金属混合物可降低耐水生大型无脊椎动物Arctopsyche grandis的表观蛋白质羰基化作用。

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摘要

Mining is widespread and an economically important industry. Unfortunately, acid mine drainage (AMD) can pollute ecosystems with a cocktail of contaminants too complex for accurately forecasting its health consequences. However, through quantification of fundamental toxic events, the effects of complex mixtures can be observed. This project explored two potentially insightful and convenient endpoints. First, oxygen consumption (MO2), a well-established and sensitive indicator of respiratory impairment was utilized. Second, protein carbonyl content (PCC), an experimental ecological biomarker widely lauded in biomedical circles as a highly conserved indicator of health status was assessed for its utility in a metal tolerant aquatic macroinvertebrate, Arctopsyche grandis. A. grandis were exposed to eight environmentally relevant target concentrations (in duplicate) of AMD for eight days at a temperature controlled greenhouse containing artificial flow-through streams. As expected, MO2 was inversely related to treatment concentration (R 2=0.35, p=0.015). Protein carbonyl content, however, diverged from predictions. Protein carbonyl content analysis detected significantly more oxidative protein injury in control treatments than in metal-rich AMD treatments (p<0.001). Moreover, there was not a significant difference in PCC between different AMD concentrations. Protein carbonyl content's departure from anticipated results likely is the consequence of dynamic interactions between direct and indirect effects at the chemical, biochemical, physiologic and behavioral levels. The results of this project illustrate flaws of utilizing a single biochemical marker to observe effects of a toxic mixture. Rather, a broad suite of biomarkers should be assayed to determine sublethal toxicity. These results also illustrates how multiple stressors can yield unanticipated outcomes.
机译:采矿业十分普遍,在经济上很重要。不幸的是,酸性矿山排水系统(AMD)可能污染生态系统,其污染物混合物过于复杂,无法准确预测其健康后果。但是,通过定量基本的毒性事件,可以观察到复杂混合物的影响。该项目探索了两个潜在的有见地且方便的端点。首先,利用了氧气消耗量(MO2),这是一种公认​​的呼吸障碍的敏感指标。其次,评估了蛋白质羰基含量(PCC),一种在生物医学界被广泛赞誉为健康状况的高度保守指标的实验性生态生物标记物,因为它在耐金属水生大型无脊椎动物Arctopsyche grandis中的效用得到了评估。在含有人工流通水流的温控温室中,将大曲霉暴露于八个与环境相关的目标浓度(一式两份)的AMD中八天。不出所料,MO2与治疗浓度成反比(R 2 = 0.35,p = 0.015)。然而,蛋白质羰基含量与预测结果有所出入。蛋白羰基含量分析在对照处理中比在富含金属的AMD处理中检测到明显更多的氧化性蛋白损伤(p <0.001)。此外,不同AMD浓度之间的PCC没有显着差异。蛋白质羰基含量偏离预期结果的原因可能是化学,生物化学,生理和行为水平上直接和间接作用之间动态相互作用的结果。该项目的结果说明了利用单一生化标记物观察有毒混合物的影响的缺陷。相反,应分析多种生物标志物以确定亚致死毒性。这些结果还说明了多种压力源如何产生意想不到的结果。

著录项

  • 作者

    Duggan, Sam B.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Toxicology.;Biology.;Environmental science.
  • 学位 M.S.
  • 年度 2015
  • 页码 86 p.
  • 总页数 86
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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