Joint Institute for Nuclear Research, 6 Joliot-Curie Str., 1419890, Dubna, Russia.
Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering, 30 Reactorului Str. MG-6, Bucharest, Magurele, Romania.
Environ Sci Pollut Res Int. 2021 Oct;28(37):52216-52224. doi: 10.1007/s11356-021-14457-6. Epub 2021 May 18.
Cyanobacteria Spirulina platensis due to its high biosorption and bioaccumulation capacity toward metal ions can be considered as an excellent candidate for environmental bioremediation. The effect of Zn and in different combinations on the accumulation capacity of Spirulina platensis biomass and its biochemical composition was investigated. Four Zn-containing systems with a different combination of metal ions (Zn; Zn/Cu/Sr; Zn/Cu/Ni; Zn/Cu/Sr/Ba) and different metal concentrations were modeled. Studied systems were introduced in the cultivation medium on the fifth day of biomass grow and experiments were performed in three variants, which differed by metal ions concentrations. Metal uptake by biomass was traced using neutron activation analysis. Spirulina platensis showed a high accumulation capacity for all metal ions present in the analyzed system. Because the metals were added at the beginning of the stationary growth phase, the contact with the biomass was only 24 h, even at the highest metal concentration in the systems, the accumulation of Spirulina platensis biomass was reduced by no more than 11.2%. Spirulina platensis biomass grown in a mono-metallic system expressed two biochemical indicators of stress: decrease of phycobiliprotein content and increase of malondialdehyde content. In biomass grown in the presence of Zn-containing multi-metallic systems, three indicators of stress were expressed: decrease of protein content, reduction of phycobiliprotein content, and increase of malondialdehyde content. Spirulina platensis biomass can be considered as an effective accumulator for the treatment of zinc-containing industrial effluents.
由于蓝藻螺旋藻具有较高的生物吸附和生物积累能力,因此可以被认为是环境生物修复的理想候选物。本研究考察了不同组合的 Zn 及其他金属离子对螺旋藻生物质积累能力及其生化成分的影响。建立了 4 种含有不同金属离子组合(Zn;Zn/Cu/Sr;Zn/Cu/Ni;Zn/Cu/Sr/Ba)和不同金属浓度的含 Zn 体系。在生物质生长的第 5 天向培养介质中引入研究体系,并在 3 种不同金属离子浓度的条件下进行实验。使用中子激活分析追踪生物质对金属的吸收。研究表明,螺旋藻对分析体系中存在的所有金属离子都具有较高的积累能力。由于金属是在静止生长阶段开始时添加的,与生物质的接触时间仅为 24 小时,即使在体系中金属浓度最高的情况下,螺旋藻生物质的积累也仅减少了 11.2%。在单一金属体系中生长的螺旋藻生物质表现出两种应激生化指标:藻蓝蛋白含量降低和丙二醛含量增加。在含有含 Zn 多金属体系中生长的生物质则表现出 3 种应激指标:蛋白质含量降低、藻蓝蛋白含量减少和丙二醛含量增加。螺旋藻生物质可以被视为处理含锌工业废水的有效积累器。