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盐度胁迫下草鱼的存活及急性渗透调节反应

Survival and acute osmoregulatory response of grass carp under salinity stress.

作者信息

Zhu Zhu, Li Shengjie, Lei Caixia, Zhu Tao, Tian Jing, Du Jinxing, Wei Shina, Song Hongmei

机构信息

Pearl River Fisheries Research Institute, Chinese Academy of Fisheries Sciences, Key Laboratory of Tropical and Subtropical Fishery Resource Application and Cultivation, China Ministry of Agriculture, Guangzhou 510380, China; College of Marine Sciences, South China Agricultural University, Guangzhou 510642, China.

Pearl River Fisheries Research Institute, Chinese Academy of Fisheries Sciences, Key Laboratory of Tropical and Subtropical Fishery Resource Application and Cultivation, China Ministry of Agriculture, Guangzhou 510380, China.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2025 Oct;308:111905. doi: 10.1016/j.cbpa.2025.111905. Epub 2025 Jul 11.

Abstract

Inland saline waters, widely distributed globally, impose stringent constraints on aquaculture owing to their high osmotic pressure, preventing most aquatic organisms from surviving. As the most extensively farmed freshwater fish worldwide, the grass carp (Ctenopharyngodon idella) is confined to freshwater habitats. The adaptation of this species to saline aquaculture holds significant ecological and economic potential; however, the mechanisms underlying its osmotic regulation in hypersaline environments remain poorly understood. In this study, juvenile grass carp with a mean body weight of 15.42 ± 0.96 g were subjected to acute salinity tolerance tests across six gradients (0, 4, 7, 10, 13, and 16 ppt). The 96 h median lethal salinity concentration (LC50) was first determined, followed by the evaluation of osmoregulatory dynamics through physiological-biochemical profiling and targeted quantification of salinity-responsive gene expression under acute stress conditions. Results showed mortality exhibited salinity-dependent escalation, and the LC50-96 h was 10.58 ppt. Under 24 h salinity exposure (0, 4, 7, and 10 ppt), grass carp exhibited salinity-dependent increases in serum electrolytes (Na, Cl, K) and cortisol (P < 0.05). Serum osmolality remained stable at 4 ppt and 7 ppt but increased significantly at 10 ppt. Serum prolactin showed progressive decline from 7 ppt. Superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) activities in the liver, kidney, and gills showed salinity-stimulated upregulation (significant at 7 and 10 ppt). Immune-related enzymes, acid phosphatase (ACP) and alkaline phosphatase (AKP), increased at 4 and 7 ppt, whereas AKP activity declined at 10 ppt. Gill Na/K-ATPase (NKA) activity was significantly elevated at 10 ppt (P < 0.01). Moreover, both gill and kidney structures exhibited significant alterations under 7 ppt and 10 ppt salinity stress. Specifically, the gill showed cracks in the filaments, chloride cell hyperplasia, and detachment of flattened epithelial cells; renal tubules were atrophic. The expression of ion transport-related genes NKA and solute carrier family 12 member 2 (SLC12A2) in the gills increased with increasing salinity; both genes showed significant differences at 7 ppt and 10 ppt, indicating their role in regulating osmotic pressure balance. This study provides a theoretical basis for the saline aquaculture technology and salt-tolerant variety development in grass carp.

摘要

内陆咸水在全球分布广泛,因其高渗透压对水产养殖造成了严格限制,使得大多数水生生物难以存活。作为全球养殖最为广泛的淡水鱼,草鱼(Ctenopharyngodon idella)局限于淡水生境。该物种对咸水养殖的适应性具有重大的生态和经济潜力;然而,其在高盐环境下的渗透调节机制仍知之甚少。在本研究中,对平均体重为15.42 ± 0.96 g的草鱼幼鱼进行了六个盐度梯度(0、4、7、10、13和16 ppt)的急性耐盐性试验。首先测定96小时半数致死盐度浓度(LC50),随后通过生理生化分析以及在急性应激条件下对盐度响应基因表达进行靶向定量,评估渗透调节动态。结果显示死亡率呈现盐度依赖性上升,96小时LC50为10.58 ppt。在24小时盐度暴露(0、4、7和10 ppt)下,草鱼血清电解质(Na、Cl、K)和皮质醇呈现盐度依赖性增加(P < 0.05)。血清渗透压在4 ppt和7 ppt时保持稳定,但在10 ppt时显著升高。血清催乳素从7 ppt开始逐渐下降。肝脏、肾脏和鳃中的超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GSH-Px)活性呈现盐度刺激上调(在7和10 ppt时显著)。免疫相关酶,酸性磷酸酶(ACP)和碱性磷酸酶(AKP)在4和7 ppt时增加,而AKP活性在10 ppt时下降。鳃中Na/K-ATP酶(NKA)活性在10 ppt时显著升高(P < 0.01)。此外,在7 ppt和10 ppt盐度胁迫下,鳃和肾脏结构均出现显著改变。具体而言,鳃丝出现裂缝、氯细胞增生以及扁平上皮细胞脱落;肾小管萎缩。鳃中离子转运相关基因NKA和溶质载体家族12成员2(SLC12A2)的表达随盐度增加而增加;这两个基因在7 ppt和10 ppt时均表现出显著差异,表明它们在调节渗透压平衡中的作用。本研究为草鱼的咸水养殖技术和耐盐品种培育提供了理论依据。

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