Adaptive Biology Laboratory, Department of Cell Biology, Federal University of Paraná, Av. Cel. Francisco H. dos Santos, s/n, Jardim das Américas, CEP 81531-970, Curitiba, Paraná, 19031, Brazil.
Federal University of Fronteira Sul, Laranjeiras do Sul, Paraná, Brazil.
J Comp Physiol B. 2022 Jan;192(1):77-94. doi: 10.1007/s00360-021-01409-2. Epub 2021 Sep 30.
Subtropical fish are exposed to seasonal variations in temperature that impose a set of adaptations on their metabolism necessary for the maintenance of homeostasis. In this study, we addressed the effects of temperature variation on the metabolism of Astyanax lacustris, a species of freshwater fish common in the subtropical region of Brazil. Biomarkers of carbohydrate and protein metabolism, antioxidant defense, and oxidative damage were evaluated in the liver of A. lacustris exposed to low (15 °C) and high (31 °C) temperature thermal shock, with controls at 23 °C for 2, 6, 12, 24, 48, 72, and 96 h. A high energy demand was observed during the first 48 h of exposure to 15 °C, which is necessary for metabolic adjustment at low temperatures, with an increase in glycolysis, citric acid cycle, and amino acid catabolism. In addition, at 31 °C, glucose was exported in the first 12 h of exposure, and an increase in the citric acid cycle suggested acetyl-CoA as the pathway substrate, originating from the oxidation of lipids. The antioxidant defenses did not change at 15 °C, as opposed to 31 °C, in which there were changes in several antioxidant defense markers, indicating a response to the production of ROS. However, oxidative stress was observed at both temperatures, with oxidative damage detected by lipid peroxidation at 15 °C and protein carbonylation at 31 °C.
亚热带鱼类会受到季节性温度变化的影响,这会对它们的新陈代谢产生一系列适应,以维持体内平衡。在这项研究中,我们研究了温度变化对淡水鱼类 Astyanax lacustris 新陈代谢的影响,该鱼类是巴西亚热带地区常见的物种。我们评估了暴露于低温(15°C)和高温(31°C)热冲击下的 A. lacustris 肝脏中的碳水化合物和蛋白质代谢、抗氧化防御和氧化损伤的生物标志物,对照组的温度为 23°C,暴露时间为 2、6、12、24、48、72 和 96 小时。在暴露于 15°C 的前 48 小时内,观察到高能量需求,这是低温下代谢调整所必需的,伴随着糖酵解、柠檬酸循环和氨基酸分解代谢的增加。此外,在 31°C 下,暴露的前 12 小时内葡萄糖被输出,柠檬酸循环的增加表明乙酰辅酶 A 是途径底物,源自脂质的氧化。抗氧化防御在 15°C 时没有变化,而在 31°C 时,几种抗氧化防御标志物发生了变化,表明对 ROS 产生的反应。然而,在这两种温度下都观察到了氧化应激,脂质过氧化在 15°C 时检测到氧化损伤,而在 31°C 时检测到蛋白质羰基化。