The accumulation of manganese by Chlamydomonas acidophila strains isolated from acid mine drainage
Аутори
Santrač, IsidoraDimitrijević, Milena
Stanić, Marina
Tanović, Marija
Ćurić, Valentina
Kovačević, Snežana
Spasojević, Ivan
Конференцијски прилог (Објављена верзија)
Метаподаци
Приказ свих података о документуАпстракт
Acid mine drainage ponds represents a specific artificial ecosystem that gives advantage to extemophilic microalgae. The mechanisms of adaptaton of such strains to excess metal concentrations that are common for their habitat, are poorly understood. Herein, we analzyed two strains of the green microalga Chlamydomonas acidophila - 137 and PM01, which have been isolated from different mining sites, for their interactions with Mn ions. The effects of different concentrations of Mn2+ were investigated in the late exponential/early stationary phase of culture growth (15 days). Viability was determined by Evans blue assay. No toxic effects were observed at concentrations as high as 2 mM Mn2+. The the time dynamics of Mn accumulation in the biomass was determined using ICP. It was shown that the maximum accumulation of Mn in strain 137 (3.79 ± 0.68 μg/mg) was reached at 24h, while for PM01 the highest uptake (3.23 ± 0.17 μg/mg) was observed at 72 h. Next we analyzed redox settings by measurin...g the levels of reduced thiols unsing in vivo EPR spin probing. The treatment with 2 mM Mn2+ induced a rapid and irreversible decrease in the level of thiols which indicates that Mn2+ activated prooxidtaive processes. The maximum drop of thios levels were: from 4.80 ± 0.05 to 2.70 ± 0.05nmol/mg fresh weight after 1h for 137; and from 4.70 ± 0.05 to 3.40 ± 0.05 nmol/mg fresh weiht after 30 min for PM01. Further, the level of reactive oxygen species was evaluated using fluorescent probe DCFH-DA assay. The changes were in agreement with thiol levels. Both tested algal strains show resistance to Mn and are therefore good candidates for application in water bioremediation.
Кључне речи:
extemophilic microalgae / manganese / metal accumulation / reduced thiols / ROSИзвор:
Serbian Biochemical Society Twelfth Conference, “Biochemistry in Biotechnology”, September 21-23, 2023, Belgrade, Serbia, 2023, 115-115Издавач:
- Faculty of Chemistry, Serbian Biochemical Society
Финансирање / пројекти:
- Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200053 (Универзитет у Београду, Институт за мултидисциплинарна истраживања) (RS-MESTD-inst-2020-200053)
Институција/група
Institut za multidisciplinarna istraživanjaTY - CONF AU - Santrač, Isidora AU - Dimitrijević, Milena AU - Stanić, Marina AU - Tanović, Marija AU - Ćurić, Valentina AU - Kovačević, Snežana AU - Spasojević, Ivan PY - 2023 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/2416 AB - Acid mine drainage ponds represents a specific artificial ecosystem that gives advantage to extemophilic microalgae. The mechanisms of adaptaton of such strains to excess metal concentrations that are common for their habitat, are poorly understood. Herein, we analzyed two strains of the green microalga Chlamydomonas acidophila - 137 and PM01, which have been isolated from different mining sites, for their interactions with Mn ions. The effects of different concentrations of Mn2+ were investigated in the late exponential/early stationary phase of culture growth (15 days). Viability was determined by Evans blue assay. No toxic effects were observed at concentrations as high as 2 mM Mn2+. The the time dynamics of Mn accumulation in the biomass was determined using ICP. It was shown that the maximum accumulation of Mn in strain 137 (3.79 ± 0.68 μg/mg) was reached at 24h, while for PM01 the highest uptake (3.23 ± 0.17 μg/mg) was observed at 72 h. Next we analyzed redox settings by measuring the levels of reduced thiols unsing in vivo EPR spin probing. The treatment with 2 mM Mn2+ induced a rapid and irreversible decrease in the level of thiols which indicates that Mn2+ activated prooxidtaive processes. The maximum drop of thios levels were: from 4.80 ± 0.05 to 2.70 ± 0.05nmol/mg fresh weight after 1h for 137; and from 4.70 ± 0.05 to 3.40 ± 0.05 nmol/mg fresh weiht after 30 min for PM01. Further, the level of reactive oxygen species was evaluated using fluorescent probe DCFH-DA assay. The changes were in agreement with thiol levels. Both tested algal strains show resistance to Mn and are therefore good candidates for application in water bioremediation. PB - Faculty of Chemistry, Serbian Biochemical Society C3 - Serbian Biochemical Society Twelfth Conference, “Biochemistry in Biotechnology”, September 21-23, 2023, Belgrade, Serbia T1 - The accumulation of manganese by Chlamydomonas acidophila strains isolated from acid mine drainage EP - 115 SP - 115 UR - https://hdl.handle.net/21.15107/rcub_rimsi_2416 ER -
@conference{ author = "Santrač, Isidora and Dimitrijević, Milena and Stanić, Marina and Tanović, Marija and Ćurić, Valentina and Kovačević, Snežana and Spasojević, Ivan", year = "2023", abstract = "Acid mine drainage ponds represents a specific artificial ecosystem that gives advantage to extemophilic microalgae. The mechanisms of adaptaton of such strains to excess metal concentrations that are common for their habitat, are poorly understood. Herein, we analzyed two strains of the green microalga Chlamydomonas acidophila - 137 and PM01, which have been isolated from different mining sites, for their interactions with Mn ions. The effects of different concentrations of Mn2+ were investigated in the late exponential/early stationary phase of culture growth (15 days). Viability was determined by Evans blue assay. No toxic effects were observed at concentrations as high as 2 mM Mn2+. The the time dynamics of Mn accumulation in the biomass was determined using ICP. It was shown that the maximum accumulation of Mn in strain 137 (3.79 ± 0.68 μg/mg) was reached at 24h, while for PM01 the highest uptake (3.23 ± 0.17 μg/mg) was observed at 72 h. Next we analyzed redox settings by measuring the levels of reduced thiols unsing in vivo EPR spin probing. The treatment with 2 mM Mn2+ induced a rapid and irreversible decrease in the level of thiols which indicates that Mn2+ activated prooxidtaive processes. The maximum drop of thios levels were: from 4.80 ± 0.05 to 2.70 ± 0.05nmol/mg fresh weight after 1h for 137; and from 4.70 ± 0.05 to 3.40 ± 0.05 nmol/mg fresh weiht after 30 min for PM01. Further, the level of reactive oxygen species was evaluated using fluorescent probe DCFH-DA assay. The changes were in agreement with thiol levels. Both tested algal strains show resistance to Mn and are therefore good candidates for application in water bioremediation.", publisher = "Faculty of Chemistry, Serbian Biochemical Society", journal = "Serbian Biochemical Society Twelfth Conference, “Biochemistry in Biotechnology”, September 21-23, 2023, Belgrade, Serbia", title = "The accumulation of manganese by Chlamydomonas acidophila strains isolated from acid mine drainage", pages = "115-115", url = "https://hdl.handle.net/21.15107/rcub_rimsi_2416" }
Santrač, I., Dimitrijević, M., Stanić, M., Tanović, M., Ćurić, V., Kovačević, S.,& Spasojević, I.. (2023). The accumulation of manganese by Chlamydomonas acidophila strains isolated from acid mine drainage. in Serbian Biochemical Society Twelfth Conference, “Biochemistry in Biotechnology”, September 21-23, 2023, Belgrade, Serbia Faculty of Chemistry, Serbian Biochemical Society., 115-115. https://hdl.handle.net/21.15107/rcub_rimsi_2416
Santrač I, Dimitrijević M, Stanić M, Tanović M, Ćurić V, Kovačević S, Spasojević I. The accumulation of manganese by Chlamydomonas acidophila strains isolated from acid mine drainage. in Serbian Biochemical Society Twelfth Conference, “Biochemistry in Biotechnology”, September 21-23, 2023, Belgrade, Serbia. 2023;:115-115. https://hdl.handle.net/21.15107/rcub_rimsi_2416 .
Santrač, Isidora, Dimitrijević, Milena, Stanić, Marina, Tanović, Marija, Ćurić, Valentina, Kovačević, Snežana, Spasojević, Ivan, "The accumulation of manganese by Chlamydomonas acidophila strains isolated from acid mine drainage" in Serbian Biochemical Society Twelfth Conference, “Biochemistry in Biotechnology”, September 21-23, 2023, Belgrade, Serbia (2023):115-115, https://hdl.handle.net/21.15107/rcub_rimsi_2416 .