大菱鲆长期缺氧引起的生理反应

IF 2.5 3区 农林科学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fish Physiology and Biochemistry Pub Date : 2024-12-01 Epub Date: 2024-08-27 DOI:10.1007/s10695-024-01398-3
Yudong Jia, Feng Wang, Shuaiyu Chen, Jiawei Wang, Yuntao Gao
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引用次数: 0

摘要

缺氧会影响鱼类的生存、生长和生理代谢过程。本研究检测了大菱鲆血浆葡萄糖和皮质醇含量、肝糖酵解(己糖激酶[HK]、磷酸果糖激酶[PFK]、丙酮酸激酶[PK])和脂肪分解(脂肪酸合成酶[FAS]、脂蛋白脂肪酶[LPL])酶活性、抗氧化酶(超氧化物歧化酶[SOD]、过氧化氢酶[CAT]、谷胱甘肽过氧化物酶[GSH-Px])活性、丙二醛(MDA)、乳酸盐和糖原含量、鳃组织学参数(鳃片长度[SLL])、鳃组织学参数(鳃片长度[SLL])和鳃组织学参数(鳃片长度[SLL])、在长期缺氧和复氧过程中,测定了鳃的抗氧化酶(超氧化物歧化酶[SOD]、过氧化氢酶[CAT]、谷胱甘肽过氧化物酶[GSH-Px])活性、丙二醛(MDA)、乳酸盐和糖原含量、鳃组织学参数(薄片长度[SLL]、宽度[SLW]、薄片间距[ID])、呼吸频率(RF)、可用于气体交换的次生薄片比例(PAGE)和 hifs(hif-1α、hif-2α、hif-3α)表达。结果表明,长期缺氧(3.34 ± 0.17 mg L-1)会显著升高血浆皮质醇和葡萄糖含量;增加肝脏HK、PK、PFK、FAS和LPL活性;降低肝糖原、乳酸含量和脂滴数量;并导致肝细胞发生变化(空泡化、细胞坏死和细胞核溶解)。肝脏 SOD、CAT、GSH-Px 活性和 MDA 含量、片层周长、SLL、ID、RF 和 PAGE 以及肝脏 hif-1α、hif-2α 和 hif-3α 也表现出相似的结果。同时,hif-1α明显高于hif-2α和hif-3α。有趣的是,在缺氧条件下,雌性和雄性的上述参数(除肝脏FAS、LPL活性和脂滴数量外)没有明显的性别差异。在复氧处理 4 周后,上述参数恢复到正常水平。因此,长期缺氧会促进大菱鲆肝糖原分解和脂肪分解,诱导氧化损伤并刺激肝脏抗氧化能力,改变鳃的形态以满足能量需求不足和减轻潜在损伤,而hif-1α在上述生理过程中起着关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Long-term hypoxia-induced physiological response in turbot Scophthalmus maximus L.

Long-term hypoxia-induced physiological response in turbot Scophthalmus maximus L.

Hypoxia affects fish's survival, growth, and physiological metabolism processes. In this study, turbot plasma glucose and cortisol contents, hepatic glycolysis (hexokinase [HK], phosphofructokinase [PFK], pyruvate kinase [PK]) and lipolysis (fatty acid synthetase [FAS], lipoprotein lipase [LPL]) enzyme activities, anti-oxidant enzyme (superoxide dismutase [SOD], catalase [CAT], glutathione peroxidase [GSH-Px]) activities, malondialdehyde (MDA), lactate and glycogen contents, gill histological parameters (lamellar length [SLL], width [SLW], interlamellar distance [ID]), respiratory frequency (RF), the proportion of the secondary lamellae available for gas exchange (PAGE), and hifs (hif-1α, hif-2α, hif-3α) expression were determined during long-term hypoxia and reoxygenation. Results showed that long-term hypoxia (3.34 ± 0.17 mg L-1) significantly elevated plasma cortisol and glucose contents; increased hepatic HK, PK, PFK, FAS, and LPL activity; decreased hepatic glycogen, lactate contents, and lipid drop numbers; and caused changes of hepatocyte (vacuolation, pyknotic, and lytic nucleus) after treatment for 4 weeks. Hepatic SOD, CAT, GSH-Px activity, and MDA contents; lamellar perimeter, SLL, ID, RF, and PAGE; and hepatic hif-1α, hif-2α, and hif-3α manifested similar results. Meanwhile, hif-1α is significantly higher than hif-2α, and hif-3α. Interestingly, females and males demonstrated no sex dimorphism significantly different from the above parameters (except hepatic FAS, LPL activity, and lipid drop number) under hypoxia. The above parameters recovered to normal levels after reoxygenation treatment for 4 weeks. Thus, long-term hypoxia promotes turbot hepatic glycogenolysis and lipolysis, induces oxidative damage and stimulates hepatic antioxidant capacity, and alters gill morphology to satisfy insufficient energy demand and alleviate potential damage, while hif-1α plays critical roles in the above physiological process.

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来源期刊
Fish Physiology and Biochemistry
Fish Physiology and Biochemistry 农林科学-生化与分子生物学
CiteScore
5.60
自引率
6.90%
发文量
106
审稿时长
4 months
期刊介绍: Fish Physiology and Biochemistry is an international journal publishing original research papers in all aspects of the physiology and biochemistry of fishes. Coverage includes experimental work in such topics as biochemistry of organisms, organs, tissues and cells; structure of organs, tissues, cells and organelles related to their function; nutritional, osmotic, ionic, respiratory and excretory homeostasis; nerve and muscle physiology; endocrinology; reproductive physiology; energetics; biochemical and physiological effects of toxicants; molecular biology and biotechnology and more.
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