Page 24 - 《渔业研究》2026年第2期
P. 24
第 2 期 苑晓乐等: 急性低氧胁迫和复氧对梭鲈鳃组织氧化应激和细胞凋亡的影响 167
on oxidative stress, apoptosis and microorganisms in the 101961.
intestine of large yellow croaker (Larimichthys crocea) [32] Carmeliet P, Dor Y, Herbert J M, et al. Role of HIF-1α
[J]. Aquaculture, 2024, 581: 740444. in hypoxia-mediated apoptosis, cell proliferation and tu-
[25] 吉宇丹. 梭鲈对低氧胁迫的应答及机制研究 [D]. 上 mour angiogenesis[J]. Nature, 1998, 394(6692): 485 −
海:上海海洋大学,2023. 490.
Ji Y D. Response and mechanism of hypoxic stress in [33] Erler J T, Cawthorne C J, Williams K J, et al. Hypoxia-
Sander lucioperca[D]. Shanghai: Shanghai Ocean Uni- mediated down-regulation of Bid and Bax in tumors oc-
versity, 2023. curs via hypoxia-inducible factor 1-dependent and-inde-
[26] Wang M, Wu F L, Xie S G, et al. Acute hypoxia and re- pendent mechanisms and contributes to drug resistance
oxygenation: effect on oxidative stress and hypoxia sig- [J]. Molecular and Cellular Biology, 2004, 24(7): 2875 −
nal transduction in the juvenile yellow catfish (Pelteoba- 2889.
grus fulvidraco)[J]. Aquaculture, 2021, 531: 735903. [34] Al-Rasheed N M, Fadda L M, Attia H A, et al. Quercet-
[27] 徐宇,许志强,严维辉,等. 急性低氧/复氧胁迫对克 in inhibits sodium nitrite-induced inflammation and
氏原螯虾抗氧化−能量代谢的影响 [J]. 水生生物学 apoptosis in different rats organs by suppressing Bax,
报,2023,47(4) :594 − 601. HIF1-α, TGF-β, Smad-2, and AKT pathways[J]. Journ-
Xu Y, Xu Z Q, Yan W H, et al. Acute hypoxia/reoxygen- al of Biochemical and Molecular Toxicology, 2017,
ation stress affect antioxidant and energy metabolism 31(5): e21883.
of procambarus clarkii[J]. Acta Hydrobiologica Sinica, [35] 林艳. 水体亚硝酸盐氮胁迫对鳙生理及肝鳃 GSH/GSTs、
2023, 47(4): 594 − 601. HIF-1α 通路关键因子表达的影响 [D]. 南京:南京农
[28] 陈祎宁. 热刺激对白梭吻鲈鳃组织病理学、抗氧化酶 业大学,2016.
及基因表达谱的影响 [D]. 苏州:苏州大学,2019. Li Y. Effect of water nitrite nitrogen stress on physiology
Chen Y N. Effects of heat stimulation on histopathology, and key gene expression of GSH/GSTs and HIF-1α path-
antioxidant enzymes and gene expression profiles of ways in liver and gill of bighead carp, Aristichthys nobi-
pikeperch (Sander lucioperca)[D]. Suzhou: Soochow lis[D]. Nanjing: Nanjing Agricultural University, 2016.
University, 2019. [36] Mcgettrick A F, O’Neill L A J. The role of HIF in im-
[29] 魏仁杰,陆芸,李岩,等. 低氧胁迫下鱼类的适应性 munity and inflammation[J]. Cell Metabolism, 2020,
策略 [J]. 水产研究,2024,11(1) :19 − 29. 32(4): 524 − 536.
Wei R J, Lu Y, Li Y, et al. Adaptation strategies of fish [37] Tsukahara S, Yamamoto S, Shwe T T W, et al. Inhala-
under hypoxic stress[J]. Open Journal of Fisheries Re- tion of low-level formaldehyde increases the Bcl-2/Bax
search, 2024, 11(1): 19 − 29. expression ratio in the hippocampus of immunologically
[30] Elhamamsy A, Metge B J, Swain C A, et al. Hypoxic sensitized mice[J]. Neuroimmunomodulation, 2006, 13
stress incites HIF1α-driven ribosome biogenesis that can (2): 63 − 68.
be exploited by targeting RNA polymerase Ⅰ[J]. Nature [38] 赵倩倩. 日本沼虾细胞凋亡相关基因的克隆及其在低
Communications, 2025, 16(1): 8018. 氧胁迫过程中的作用研究 [D]. 上海:上海海洋大
[31] Tang J H, Deng H Y, Wang Z X, et al. EGLN1 prolyl 学,2023.
hydroxylation of hypoxia-induced transcription factor Zhao Q Q. Cloning of apoptosis-related genes in Macro-
HIF1α is repressed by SET7-catalyzed lysine methyla- brachium nipponense: its role in response to hypoxia
tion[J]. Journal of Biological Chemistry, 2022, 298(6): [D]. Shanghai: Shanghai Ocean University, 2023.

