Department of Animal Physiology and Biochemistry, A.O. Kovalevsky Institute of Biology of Southern Seas RAS, 38 Leninsky Ave., Moscow, 119991, Russia.
Department of Functioning of Marine Ecosystem, A.O. Kovalevsky Institute of Biology of Southern Seas RAS, 38 Leninsky Ave., Moscow, 119991, Russia.
Fish Physiol Biochem. 2022 Aug;48(4):1105-1115. doi: 10.1007/s10695-022-01103-2. Epub 2022 Jul 18.
The activity of oxidoreductases, malate dehydrogenase and lactate dehydrogenase (MDH, 1.1.1.37; LDH, 1.1.1.27), as well as parameters of adenylate system-[ATP], [ADP], [AMP], total adenylate pool (AP), and adenylate energy charge (AEC) in medulla oblongata (MB) and forebrain, midbrain, and diencephalon (FDMB)-were studied in the scorpionfish under acute hypoxia (0.9-1.2 mg O·L, 90 min). A higher MDH activity level was observed in MB and FDMB, as compared to LDH (p < 0.05). At the same time, MB showed a higher adenylate content and increased AP (p < 0.05). AEC did not exceed ~ 0.7 (vs. the maximum of this index ~ 0.9-1.0) in the brain of the scorpionfish indicating adaptation of the tissue energy status to hypoxia. A rapid decrease in MDH activity (p < 0.05) was observed in MB under acute hypoxia. These changes were accompanied by insignificant LDH activation. A pronounced LDH activation (p < 0.05), a decrease in MDH activity, and the highest AP raise (p < 0.05) were observed in FDMB, suggesting activation of glycolysis and simultaneous decrease in the rate of ATP consumption. MB and FDMB demonstrated the ability to a relative retention of AEC during hypoxia. The unidirectional metabolic adaptation was based on the intensification of glycolysis, a decrease of ATP consumption, and a subsequent increase in adenylate concentration that allowed the scorpionfish brain structures to maintain the energy status under acute hypoxia.
在急性低氧(0.9-1.2 mg O·L,90 min)条件下,研究了圆斑蝰鱼延脑(MB)和前脑、中脑和间脑(FDMB)中氧化还原酶(苹果酸脱氢酶和乳酸脱氢酶,MDH,1.1.1.37;LDH,1.1.1.27)的活性以及腺嘌呤核苷酸系统的参数[ATP]、[ADP]、[AMP]、总腺苷酸池(AP)和腺苷酸能荷(AEC)。与 LDH 相比,MB 和 FDMB 中的 MDH 活性水平更高(p < 0.05)。同时,MB 显示出更高的腺苷酸含量和增加的 AP(p < 0.05)。AEC 未超过组织能量状态适应低氧的0.7(该指数的最大值为0.9-1.0)。在圆斑蝰鱼的大脑中观察到 MDH 活性的快速下降(p < 0.05)在急性低氧下。这些变化伴随着 LDH 活性的不显著增加。在 FDMB 中观察到明显的 LDH 激活(p < 0.05)、MDH 活性下降和最高 AP 升高(p < 0.05),表明糖酵解的激活和同时 ATP 消耗率的降低。MB 和 FDMB 表现出在低氧期间相对保留 AEC 的能力。单向代谢适应基于糖酵解的强化、ATP 消耗的减少以及随后的腺苷酸浓度增加,这使圆斑蝰鱼大脑结构能够在急性低氧下维持能量状态。