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Assessing the effect of mercury pollution on cultured benthic foraminifera community using morphological and eDNA metabarcoding approaches

机译:使用形态学和eDNA元条形码方法评估汞污染对养殖底栖有孔虫群落的影响

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Mercury (Hg) is a highly toxic element for living organisms and is known to bioaccumulate and biomagnify. Here, we analyze the response of benthic foraminifera communities cultured in mesocosm and exposed to different concentrations of Hg. Standard morphological analyses and environmental DNA metabarcoding show evidence that Hg pollution has detrimental effects on benthic foraminifera. The molecular analysis provides a more complete view of foraminiferal communities including the soft-walled single-chambered monothalamiids and small-sized hard-shelled rotaliids and textulariids than the morphological one. Among these taxa that are typically overlooked in morphological studies we found potential bioindicators of Hg pollution. The mesocosm approach proves to be an effective method to study benthic foraminiferal responses to various types and concentrations of pollutants over time. This study further supports foraminiferal metabarcoding as a complementary and/or alternative method to standard biomonitoring program based on the morphological identification of species communities.
机译:汞(Hg)对活生物体是一种剧毒元素,已知具有生物蓄积和生物放大作用。在这里,我们分析了底栖有孔膜培养的底栖有孔虫群落的响应并暴露于不同浓度的汞。标准的形态学分析和环境DNA元条形码表明,汞污染对底栖有孔虫有不利影响。分子分析提供了比形态学更完整的有孔虫群落的视图,包括软壁的单室单拟南芥,小型硬壳的rotaliids和textulariids。在形态学研究中通常忽略的这些分类中,我们发现了潜在的汞污染生物指示剂。中观方法被证明是研究底栖有孔虫对各种类型和浓度的污染物随时间变化的有效方法。这项研究进一步支持有孔虫metabarcoding作为基于物种群落形态识别的标准生物监测程序的补充和/或替代方法。

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