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- 01J6A2NKB5Z100X81VWFW0JG3F classification C3.
- 01J6A2NKB5Z100X81VWFW0JG3F date "2022".
- 01J6A2NKB5Z100X81VWFW0JG3F language "eng".
- 01J6A2NKB5Z100X81VWFW0JG3F type conference.
- 01J6A2NKB5Z100X81VWFW0JG3F hasPart urn:uuid:860347f6-82f4-4203-bace-e4bf41746fa8.
- 01J6A2NKB5Z100X81VWFW0JG3F subject "Biology and Life Sciences".
- 01J6A2NKB5Z100X81VWFW0JG3F subject "Chemistry".
- 01J6A2NKB5Z100X81VWFW0JG3F presentedAt urn:uuid:08f75bd1-7a00-4286-ba1b-c9e41c1ac220.
- 01J6A2NKB5Z100X81VWFW0JG3F abstract "Perfluorooctanoic acid (PFOA) and its substitute GenX are persistent organic pollutants that are widespread in the aquatic environment. In this study, the green alga Chlorella pyrenoidosa (C. pyrenoidosa) was exposed to an environmentally relevant concentration of PFOA or GenX. The results showed that the growth of algae began to be inhibited after 6 days of exposure. The changes in genes expressions correlated to the physiological biochemical changes, and there were multiple molecular mechanisms of C. pyrenoidosa responding to the toxicity of PFOA and GenX. However, the antioxidant enzyme in algal cells increased, and most of the genes related to antioxidant enzymes in cells were also up-regulated, which indicated microalgae could improve the activity of antioxidant enzymes to remove the reactive oxygen species caused by these two pollutants.".
- 01J6A2NKB5Z100X81VWFW0JG3F author 509d3629-1027-11ec-8259-b9b144780759.
- 01J6A2NKB5Z100X81VWFW0JG3F dateCreated "2024-08-27T14:08:38Z".
- 01J6A2NKB5Z100X81VWFW0JG3F dateModified "2024-11-28T00:19:40Z".
- 01J6A2NKB5Z100X81VWFW0JG3F name "Toxicity mechanism of PFOA and its substitute GenX on microalgae".
- 01J6A2NKB5Z100X81VWFW0JG3F sameAs LU-01J6A2NKB5Z100X81VWFW0JG3F.
- 01J6A2NKB5Z100X81VWFW0JG3F sourceOrganization urn:uuid:ab90c5cc-1d7c-441d-8c3d-27fdb114e43c.
- 01J6A2NKB5Z100X81VWFW0JG3F type C3.