Procopio Zaniel S D, Roberts Joanne B, Hunter Colin, Pahl Ole
School of Computing, Engineering and Built Environment, Civil Engineering & Environmental Technology, Glasgow Caledonian University, 70 Cowcaddens Road, Glasgow G4 0BA, UK.
Biology (Basel). 2021 Sep 16;10(9):926. doi: 10.3390/biology10090926.
Micropollutants in aquatic resources have raised global concerns regarding the conservation of ecosystems. Although they are usually found in the environment at trace concentrations to a maximum of several µg/L, it is still necessary to address the potential risks these pollutants may represent to organisms. A multifactor analysis was conducted using two algae as bioindicators. Four different pharmaceuticals were chosen based on their occurrence in domestic wastewaters and persistency after biological treatment processes ranging from 1/8th to four-fold representative environmental concentrations over 96 h exposure. The present multifactor analysis evaluated cell size, photosynthetic capacity and growth rate. These data were later combined into a simplified single entity: "the index effect". The results obtained showed that, even at concentrations below the environmentally relevant concentrations (ERC), the pharmaceuticals' residues (PRs), caused a cellular behavioural variation in both organisms. In addition, the algae cultures' response to exposure to these stressors was generally dependent on the concentration over time. By examining four different PR over three different characteristics of two types of algal bioindicators, this work covers significant and specific responses on the algae exposure cycle. This is unique research since most studies do not consider multiple parameters in the assessment of the environment risk for bioindicators.
水生资源中的微污染物已引发全球对生态系统保护的关注。尽管它们通常在环境中以痕量浓度存在,最高可达几微克/升,但仍有必要应对这些污染物可能对生物体造成的潜在风险。使用两种藻类作为生物指示剂进行了多因素分析。基于它们在生活污水中的出现情况以及生物处理过程后的持久性,选择了四种不同的药物,在96小时暴露期间,其浓度范围为代表性环境浓度的八分之一至四倍。目前的多因素分析评估了细胞大小、光合能力和生长速率。这些数据随后被合并为一个简化的单一实体:“指数效应”。获得的结果表明,即使在低于环境相关浓度(ERC)的浓度下,药物残留(PRs)也会在两种生物体中引起细胞行为变化。此外,藻类培养物对这些应激源暴露的反应通常取决于浓度随时间的变化。通过研究两种藻类生物指示剂的三种不同特征下的四种不同PR,这项工作涵盖了藻类暴露周期中显著且特定的反应。这是一项独特的研究,因为大多数研究在评估生物指示剂的环境风险时没有考虑多个参数。