Metabolic responses in the gills of Yellowtail Lambari Astyanax lacustris under low‐ and high‐temperature thermal stress

Author:

Schleger Ieda Cristina1,Pereira Diego Mauro Carneiro1,Resende Anna Carolina1,Romão Silvia2,Herrerias Tatiana3,Neundorf Ananda Karla Alves1,de Souza Maria Rosa Dmengeon Pedreiro1,Donatti Lucélia1

Affiliation:

1. Adaptive Biology Laboratory, Cell Biology Department Federal University of Paraná Curitiba Paraná Brazil

2. Federal University of Fronteira Sul Laranjeiras do Sul Paraná Brazil

3. Uniguairacá University Center Guarapuava Paraná Brazil

Abstract

AbstractObjectiveEctothermic fish are directly affected by temperature changes in the environment. The aim of this study was to evaluate the metabolic responses in the gills of Yellowtail Lambari Astyanax lacustris under thermal stress.MethodsTo this end, we used spectrophotometry to evaluate the biomarkers of carbohydrate and protein metabolism, antioxidant defense, and oxidative damage in fish subjected to low (15°C) and high (31°C) temperatures, with control groups held at 23°C, for 2, 6, 12, 24, 48, and 96 h.ResultThe results showed that cold thermal stress did not change the energy demand, and the antioxidant defense was reduced; therefore, the gills were vulnerable to the action of reactive oxygen species (ROS), presenting increased protein carbonylation at 12 h. With heat thermal stress, a higher energy demand was observed, which was verified by an increase in aerobic metabolism by glycolysis and the citric acid cycle. High‐temperature stress also increased the antioxidant defenses, as verified by the increased activities of glutathione peroxidase, glutathione reductase, and glutathione S‐transferase. However, the antioxidant defense system could not protect tissues from the action of ROS, as protein carbonylation increased at 6 and 24 h, indicating oxidative stress.ConclusionThe results showed that (1) temperature variations caused metabolic adjustments in the gills of Yellowtail Lambari, (2) the adaptive responses were different for winter and summer temperatures, and (3) Yellowtail Lambari recovered homeostasis when subjected to thermal stress, even with the occurrence of oxidative stress.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Wiley

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