Combined effects of benzophenone-3 and temperature on gene expression and enzymatic activity in the aquatic larvae Chironomus riparius

Climate change and pollution are two of the main environmental problems living organisms currently face. Temperature canmodify a toxicant's effects and the organism's response to it. Globalwarming is expected to increase the temperature of freshwater ecosystems. In thiswork,we analyzed the...

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Detalhes bibliográficos
Autores: Muñiz González, Ana Belén, Martínez Guitarte, José Luis
Formato: artículo
Fecha de publicación:2020
País:España
Recursos:Universidad Nacional de Educación a Distancia
Repositorio:e-spacio. Repositorio Institucional de la UNED
Idioma:inglés
OAI Identifier:oai:e-spacio.uned.es:20.500.14468/25640
Acesso em linha:https://hdl.handle.net/20.500.14468/25640
Access Level:acceso abierto
Palavra-chave:23 Química::2302 Bioquímica
24 Ciencias de la Vida::2408 Etología::2408.03 Insectos
25 Ciencias de la Tierra y del Espacio::2502 Climatología
UV-filter
Climate change
Acute toxicity
Chironomid
Filtro UV
Cambio climático
Toxicidad aguda
Quironómidos
Descrição
Resumo:Climate change and pollution are two of the main environmental problems living organisms currently face. Temperature canmodify a toxicant's effects and the organism's response to it. Globalwarming is expected to increase the temperature of freshwater ecosystems. In thiswork,we analyzed the effect of a mild temperature increase on the acute response of the aquatic larvae Chironomus riparius to the ultraviolet filter benzophenone-3 (BP3). This substance is commonly used in sunscreens and other commercial products and can reach the environment in different ways.We exposed larvae to BP3 at 18.5 or 23 °C for 8 or 24 h and analyzed the acute response at the molecular level. By quantitative real-time polymerase chain reaction (q-PCR), we studied altered messenger RNA (mRNA) levels of genes related to the endocrine system (EcR, InR and Met), detoxification mechanisms (Cyp4d2, Cyp6b7, GST d6, GST o1 and MRP-1) and stress response (Hsp22, Hsp27, Hsp70, HYOU and Gp93). Moreover, enzyme activity was evaluated, with a focus on glutathione-S-transferase (GST), phenoloxidase (PO) and acetylcholinesterase (AChE). Results showed that temperature affected the acute response of this organism by modifying the expression of EcR, Cyp6b7, GST d6, GST o1, MRP-1, Hsp22, Hsp27 and Hsp70 genes. These results suggest that even mild temperature change can affect the response of this organism to BP3 influencing short-term progress of the population. Although longer exposures are required to determine the ability of C. riparius to manage the pollutants in this novel environmental conditions, in order to know the possible mechanisms of detoxification or adaptation that may develop. This research represents a first step in the analysis of multi-stress