Adaptive Biology Laboratory, Cell Biology Department, Federal University of Paraná, Curitiba, Paraná, Brazil.
Federal University of Fronteira Sul, Laranjeiras do Sul, Paraná, Brazil.
J Aquat Anim Health. 2024 Mar;36(1):16-31. doi: 10.1002/aah.10199. Epub 2024 Jan 13.
Ectothermic 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.
To 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.
The 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.
The 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.
变温动物的鱼会直接受到环境温度变化的影响。本研究旨在评估热应激下黄尾蓝魔Astyanax lacustris 鳃中的代谢反应。
为此,我们使用分光光度法评估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,将鱼置于低(15°C)温和高(31°C)温下,对照组在 23°C 下保持 2、6、12、24、48 和 96 小时。
结果表明,冷应激不会改变能量需求,抗氧化防御能力降低;因此,鳃易受活性氧(ROS)的作用,在 12 小时时出现蛋白质羰基化增加。热应激时,观察到更高的能量需求,这通过糖酵解和柠檬酸循环的有氧代谢增加得到证实。高温应激还增加了谷胱甘肽过氧化物酶、谷胱甘肽还原酶和谷胱甘肽 S-转移酶的活性,从而增加了抗氧化防御能力。然而,抗氧化防御系统无法防止组织受到 ROS 的作用,因为在 6 和 24 小时时蛋白质羰基化增加,表明存在氧化应激。
结果表明,(1)温度变化导致黄尾蓝魔鳃中的代谢发生调整,(2)冬季和夏季温度的适应反应不同,(3)即使发生氧化应激,黄尾蓝魔在受到热应激时仍能恢复体内平衡。