Sirakov Maria, Palmieri Maria, Iovinella Manuela, Davis Seth J, Petriccione Milena, di Cicco Maria Rosa, De Stefano Mario, Ciniglia Claudia
Department of Biology and Evolution of Marine Organisms, Stazione Zoologica Anton Dohrn, Villa Comunale, 80121 Naples, Italy.
Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, Università Degli Studi di Caserta "L. Vanvitelli", Via Vivaldi 43, 81100 Caserta, Italy.
Plants (Basel). 2021 Nov 3;10(11):2367. doi: 10.3390/plants10112367.
Polyextremophilic red algae, which belong to the class , are adapted to live in geothermal and volcanic sites. These sites often have very high concentrations of heavy and precious metals. In this study, we assessed the capacity of three strains of (, , and ) and one strain of to tolerate different concentrations of precious metals, such as palladium (ClKPd) and gold (AuClK) by monitoring algal growths in cultures exposed to metals, and we investigated the algae potential oxidative stress induced by the metals. This work provides further understanding of metals responses in the , as this taxonomic class is developed as a biological refinement tool.
多极端嗜热红藻属于[具体类别未给出]纲,适应生活在地热和火山区域。这些区域通常含有极高浓度的重金属和贵金属。在本研究中,我们通过监测暴露于金属的培养物中藻类的生长情况,评估了三株[具体藻类名称未给出]([菌株1名称]、[菌株2名称]和[菌株3名称])和一株[另一藻类名称未给出]耐受不同浓度贵金属(如钯(ClKPd)和金(AuClK))的能力,并研究了金属诱导的藻类潜在氧化应激。这项工作进一步加深了我们对[该藻类类别名称]中金属反应的理解,因为这一分类类别正被开发为一种生物提纯工具。