Effects of cadmium and cobalt mixtures on growth and photosynthesis of Raphidocelis subcapitata (Chlorophyceae)
•IC50–96h values of growth inhibition of R. subcapitata were 0.08mg L−1 Cd and 0.11 mg L−1 Co•CA model and DR deviation best fitted to our data in mixture tests.•In mixtures, synergic effects occurred above 0.1 mg Co L−1 and below 0.05 mg Cd L−1.•In mixtures, antagonism occurred above 0.05 mg Cd L−1...
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Published in: | Aquatic toxicology Vol. 244; p. 106077 |
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Main Authors: | , , , , , |
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Abstract | •IC50–96h values of growth inhibition of R. subcapitata were 0.08mg L−1 Cd and 0.11 mg L−1 Co•CA model and DR deviation best fitted to our data in mixture tests.•In mixtures, synergic effects occurred above 0.1 mg Co L−1 and below 0.05 mg Cd L−1.•In mixtures, antagonism occurred above 0.05 mg Cd L−1 and below 0.1 Co mg L−1.•We found antagonism effects on maximum quantum yield (ΦM) and oxygen evolving complex (OEC).
Metals occur simultaneously in the environment, and therefore it is important to know their toxicity and mechanism of action when associated with another metal. Furthermore, anthropogenic actions increase their concentrations in the environment where they can interact and undergo transformations that can even increase their toxicity. This study aimed to evaluate the effects of cadmium (Cd) and cobalt (Co), isolated and combined, on the microalgae Raphidocelis subcapitata. Regarding the toxicity of isolated metals, the IC5096 h was 0.08 mg L−1 of Cd and 0.16 mg L−1 of Co. Cell density decreased at all concentrations of the Cd tested. The parameters related to cell size, cell complexity and mean cell chlorophyll a (Chl a) fluorescence were significantly affected by both metals. According to species sensitivity curves (SSD), the microalgae R. subcapitata was the second most sensitive organism to Co exposure and the tenth concerning Cd. Metal mixture data were best fitted to the concentration addition (CA) model and dose-ratio dependence (DR) deviation, showing synergism at high concentrations of Co and low concentrations of Cd. Besides that, antagonism was observed at low concentrations of Co and high concentrations of Cd. Photosynthetic performance, assessed by maximum quantum yield (ΦM) and oxygen evolving complex (OEC), presented antagonism effects for both analyzed parameters. Thus, the mixture of Cd and Co showed synergistic and antagonistic interactions for the parameters analyzed in R. Subcapitata, indicating the importance of understanding the mechanisms of toxicity of metal mixtures in phytoplankton. |
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AbstractList | •IC50–96h values of growth inhibition of R. subcapitata were 0.08mg L−1 Cd and 0.11 mg L−1 Co•CA model and DR deviation best fitted to our data in mixture tests.•In mixtures, synergic effects occurred above 0.1 mg Co L−1 and below 0.05 mg Cd L−1.•In mixtures, antagonism occurred above 0.05 mg Cd L−1 and below 0.1 Co mg L−1.•We found antagonism effects on maximum quantum yield (ΦM) and oxygen evolving complex (OEC).
Metals occur simultaneously in the environment, and therefore it is important to know their toxicity and mechanism of action when associated with another metal. Furthermore, anthropogenic actions increase their concentrations in the environment where they can interact and undergo transformations that can even increase their toxicity. This study aimed to evaluate the effects of cadmium (Cd) and cobalt (Co), isolated and combined, on the microalgae Raphidocelis subcapitata. Regarding the toxicity of isolated metals, the IC5096 h was 0.08 mg L−1 of Cd and 0.16 mg L−1 of Co. Cell density decreased at all concentrations of the Cd tested. The parameters related to cell size, cell complexity and mean cell chlorophyll a (Chl a) fluorescence were significantly affected by both metals. According to species sensitivity curves (SSD), the microalgae R. subcapitata was the second most sensitive organism to Co exposure and the tenth concerning Cd. Metal mixture data were best fitted to the concentration addition (CA) model and dose-ratio dependence (DR) deviation, showing synergism at high concentrations of Co and low concentrations of Cd. Besides that, antagonism was observed at low concentrations of Co and high concentrations of Cd. Photosynthetic performance, assessed by maximum quantum yield (ΦM) and oxygen evolving complex (OEC), presented antagonism effects for both analyzed parameters. Thus, the mixture of Cd and Co showed synergistic and antagonistic interactions for the parameters analyzed in R. Subcapitata, indicating the importance of understanding the mechanisms of toxicity of metal mixtures in phytoplankton. Metals occur simultaneously in the environment, and therefore it is important to know their toxicity and mechanism of action when associated with another metal. Furthermore, anthropogenic actions increase their concentrations in the environment where they can interact and undergo transformations that can even increase their toxicity. This study aimed to evaluate the effects of cadmium (Cd) and cobalt (Co), isolated and combined, on the microalgae Raphidocelis subcapitata. Regarding the toxicity of isolated metals, the IC 96 h was 0.08 mg L of Cd and 0.16 mg L of Co. Cell density decreased at all concentrations of the Cd tested. The parameters related to cell size, cell complexity and mean cell chlorophyll a (Chl a) fluorescence were significantly affected by both metals. According to species sensitivity curves (SSD), the microalgae R. subcapitata was the second most sensitive organism to Co exposure and the tenth concerning Cd. Metal mixture data were best fitted to the concentration addition (CA) model and dose-ratio dependence (DR) deviation, showing synergism at high concentrations of Co and low concentrations of Cd. Besides that, antagonism was observed at low concentrations of Co and high concentrations of Cd. Photosynthetic performance, assessed by maximum quantum yield (Φ ) and oxygen evolving complex (OEC), presented antagonism effects for both analyzed parameters. Thus, the mixture of Cd and Co showed synergistic and antagonistic interactions for the parameters analyzed in R. Subcapitata, indicating the importance of understanding the mechanisms of toxicity of metal mixtures in phytoplankton. |
ArticleNumber | 106077 |
Author | Gebara, Renan Castelhano Alho, Lays de Oliveira Gonçalves de Abreu, Cínthia Bruno Mansano, Adrislaine da Silva dos Reis, Larissa Luiza Melão, Maria da Graça Gama |
Author_xml | – sequence: 1 givenname: Larissa Luiza surname: dos Reis fullname: dos Reis, Larissa Luiza email: larissa_scp@hotmail.com organization: Universidade Federal de São Carlos – UFSCar, Department of Hydrobiology, Rodovia Washington Luís, Km 235, Zip Code 13565-905, São Carlos, SP, Brazil – sequence: 2 givenname: Lays de Oliveira Gonçalves surname: Alho fullname: Alho, Lays de Oliveira Gonçalves organization: Universidade Federal de São Carlos – UFSCar, Department of Hydrobiology, Rodovia Washington Luís, Km 235, Zip Code 13565-905, São Carlos, SP, Brazil – sequence: 3 givenname: Cínthia Bruno surname: de Abreu fullname: de Abreu, Cínthia Bruno organization: Universidade Federal de São Carlos – UFSCar, Department of Hydrobiology, Rodovia Washington Luís, Km 235, Zip Code 13565-905, São Carlos, SP, Brazil – sequence: 4 givenname: Renan Castelhano surname: Gebara fullname: Gebara, Renan Castelhano organization: Universidade Federal de São Carlos – UFSCar, Department of Hydrobiology, Rodovia Washington Luís, Km 235, Zip Code 13565-905, São Carlos, SP, Brazil – sequence: 5 givenname: Adrislaine da Silva surname: Mansano fullname: Mansano, Adrislaine da Silva organization: Universidade Federal de São Carlos – UFSCar, Department of Hydrobiology, Rodovia Washington Luís, Km 235, Zip Code 13565-905, São Carlos, SP, Brazil – sequence: 6 givenname: Maria da Graça Gama surname: Melão fullname: Melão, Maria da Graça Gama organization: Universidade Federal de São Carlos – UFSCar, Department of Hydrobiology, Rodovia Washington Luís, Km 235, Zip Code 13565-905, São Carlos, SP, Brazil |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/35091369$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1016_j_envpol_2023_122805 crossref_primary_10_3390_phycology4010007 crossref_primary_10_3390_toxics11121005 crossref_primary_10_1002_etc_5927 crossref_primary_10_1016_j_algal_2023_103098 crossref_primary_10_1007_s42729_023_01525_8 crossref_primary_10_1007_s00253_024_13038_0 crossref_primary_10_1016_j_marpolbul_2023_115819 crossref_primary_10_1007_s10646_024_02728_0 crossref_primary_10_1016_j_algal_2024_103475 |
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Keywords | Species sensitivity distribution Combined effects Ecotoxicology Synergism Metal toxicity |
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Snippet | •IC50–96h values of growth inhibition of R. subcapitata were 0.08mg L−1 Cd and 0.11 mg L−1 Co•CA model and DR deviation best fitted to our data in mixture... Metals occur simultaneously in the environment, and therefore it is important to know their toxicity and mechanism of action when associated with another... |
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SubjectTerms | Cadmium - toxicity Chlorophyceae Chlorophyll A Cobalt - toxicity Combined effects Ecotoxicology Metal toxicity Photosynthesis Species sensitivity distribution Synergism Water Pollutants, Chemical - toxicity |
Title | Effects of cadmium and cobalt mixtures on growth and photosynthesis of Raphidocelis subcapitata (Chlorophyceae) |
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