Centro de Estudos em Limnologia Biodiversidade e Etnobiologia do Pantanal, Universidade do Estado de Mato Grosso (UNEMAT), Brasil. Avenida Santos Dummont, Cidade Universitária, 78200-000 Cáceres, MT, Brazil.
Environmental Chemistry Department, Institute of Environmental Assessment and Water Research (IDAEA-CSIC). C/Jordi Girona, 18-26, 08034 Barcelona, Spain.
Sci Total Environ. 2019 Jun 10;668:723-729. doi: 10.1016/j.scitotenv.2019.02.233. Epub 2019 Feb 16.
Biotic mercury (Hg) methylation appears to depend on factors such as microbial activity and the concentration and bioavailability of Hg to the Hg-methylating organisms. Recently, the presence of cyanobacteria has been linked with high methylmercury (MeHg) concentrations. The aim of this work was to test MeHg production in microcosms, in relation to the amount of periphytic cyanobacteria, dissolved organic matter (DOM) and phosphorus concentrations, as well as periphytic primary production rates. Water and periphyton samples were collected for cultivation and isolation of cyanobacteria from the Guaporé River floodplain, Brazil. We cultivated the periphyton in microcosms with different concentrations of cyanobacteria, total phosphorus and DOM. The highest net MeHg production (6.8 to 24.6% of added Hg d) occurred in the microcosm with added cyanobacteria, followed by microcosms with added phosphorus (6.1 to 11.4%) and added DOM (6.4 to 9.1%). Positive correlations were found between MeHg production, addition of cyanobacteria, phosphorus and DOM and periphytic primary productivity. Our results bring the first direct experimental evidence of the relevance of cyanobacteria and primary production as regulators of MeHg production in periphyton. These findings have numerous implications for the management of natural and engineered wetlands.
生物汞(Hg)甲基化似乎取决于微生物活性以及 Hg 向 Hg 甲基化生物的浓度和生物可利用性等因素。最近,蓝藻的存在与高甲基汞(MeHg)浓度有关。本研究的目的是在微宇宙中测试 MeHg 的产生情况,以研究附着藻类、溶解有机物(DOM)和磷浓度以及附着藻类初级生产力与 MeHg 产生之间的关系。采集水和附着藻类样本,以从巴西瓜波雷河漫滩中培养和分离蓝藻。我们在微宇宙中以不同浓度的蓝藻、总磷和 DOM 培养附着藻类。在添加蓝藻的微宇宙中(添加 Hg 的净 MeHg 产量为 6.8%至 24.6%),以及添加磷(添加 Hg 的净 MeHg 产量为 6.1%至 11.4%)和 DOM(添加 Hg 的净 MeHg 产量为 6.4%至 9.1%)的微宇宙中,MeHg 产量最高。MeHg 产量与添加蓝藻、磷和 DOM 以及附着藻类初级生产力之间存在正相关关系。本研究结果首次直接提供了实验证据,证明蓝藻和初级生产力是附着藻类中 MeHg 产生的重要调控因素。这些发现对自然和人工湿地的管理具有重要意义。