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在广盐性印度青鳉急性低温胁迫期间,盐度依赖性反应使鳃离子调节产生差异。

Salinity-dependent responses differentiate branchial ion regulation during acute hypothermal stress in euryhaline Indian Medaka.

作者信息

Ranasinghe Naveen, Akram Salman, Lee Shi-Shien, Liao Pin-Jhu, Yang Tsung-Jui, Kung Yu-Chieh, Lee Tsung-Han, Liu Chia-Jui

机构信息

Department of Life Sciences, College of Life Sciences, National Chung Hsing University, 145, Xingda Road, Taichung, 402, Taiwan.

The iEGG and Animal Biotechnology Center, National Chung Hsing University, Taichung, 402, Taiwan.

出版信息

Fish Physiol Biochem. 2025 Sep 17;51(5):165. doi: 10.1007/s10695-025-01565-0.

Abstract

Gill function in gas exchange and ion regulation is crucial for ionoregulatory homeostasis in teleost fishes, yet further research is needed to elucidate how cold stress affects these processes, particularly in relation to salinity-dependent tolerability. Indian medaka (Oryzias melastigma) were acclimated to freshwater (FW) and seawater (SW) environments before being exposed to cold stress at 18 °C for 168 h. The protein abundance of the apoptotic marker Caspase-3 increased significantly in SW-acclimated fish compared to controls, indicating a heightened apoptotic response under cold stress in SW conditions. Concurrently, the expression of the anti-apoptotic gene birc5 exhibited distinct patterns in FW and SW, suggesting differential regulatory mechanisms in response to cold exposure. Transcriptomic analysis revealed that cold stress significantly influenced genes related to ion regulation, osmoregulation, and cellular metabolism, with distinct pathways activated in FW and SW environments. Notably, SW-specific genes were predominantly involved in metabolic pathways and stress signaling, while FW-specific genes were linked to transport processes and cellular maintenance. Additionally, cold stress significantly affected the expression of Na/K-ATPase (NKA) subunits and ion transport genes, underscoring the impact of temperature and salinity on gill function. The study highlights the importance of tight junctions (TJ) and gap junction (GJ) in maintaining gill integrity during environmental stress, with differential regulation of key genes like ocln, cask, and gja3 in response to salinity and temperature shifts. These findings highlight the superior molecular and cellular adaptations of euryhaline fish in SW to cold stress, emphasizing how salinity enhances gill responses and suggesting potential strategies for improving cold tolerance in aquaculture.

摘要

鳃在气体交换和离子调节中的功能对于硬骨鱼类的离子调节稳态至关重要,但仍需要进一步研究以阐明冷应激如何影响这些过程,特别是与盐度依赖性耐受性相关的方面。印度青鳉(Oryzias melastigma)在暴露于18°C的冷应激168小时之前,先适应淡水(FW)和海水(SW)环境。与对照组相比,适应海水的鱼类中凋亡标志物Caspase-3的蛋白质丰度显著增加,表明在海水条件下冷应激时凋亡反应增强。同时,抗凋亡基因birc5的表达在淡水和海水中呈现出不同的模式,表明对冷暴露的调节机制存在差异。转录组分析表明,冷应激显著影响与离子调节、渗透调节和细胞代谢相关的基因,在淡水和海水环境中激活了不同的途径。值得注意的是,海水特异性基因主要参与代谢途径和应激信号传导,而淡水特异性基因与运输过程和细胞维持有关。此外,冷应激显著影响Na/K-ATPase(NKA)亚基和离子转运基因的表达,强调了温度和盐度对鳃功能的影响。该研究强调了紧密连接(TJ)和间隙连接(GJ)在环境应激期间维持鳃完整性的重要性,随着盐度和温度变化,ocln、cask和gja3等关键基因受到不同调节。这些发现突出了广盐性鱼类在海水中对冷应激的卓越分子和细胞适应性,强调了盐度如何增强鳃的反应,并提出了提高水产养殖中耐寒性的潜在策略。

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