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盐度胁迫下的地中海贻贝(Mytilus galloprovincialis):对抗氧化能力和鳃结构的影响

Mediterranean Mussels (Mytilus galloprovincialis) Under Salinity Stress: Effects on Antioxidant Capacity and Gill Structure.

作者信息

Andreyeva Aleksandra, Gostyukhina Olga, Gavruseva Tatyana, Sigacheva Tatyana, Tkachuk Anastasiya, Podolskaya Mariya, Chelebieva Elina, Kladchenko Ekaterina

机构信息

Laboratary of Hydrobionts Ecological Immunology, A.O. Kovalevsky Institute of Biology of the Southern Seas of RAS, Moscow, Russian Federation.

出版信息

J Exp Zool A Ecol Integr Physiol. 2025 Mar;343(2):184-196. doi: 10.1002/jez.2879. Epub 2024 Nov 6.

Abstract

Bivalve mollusks frequently experience salinity fluctuations that may drive oxidative stress (OS) in the organism. Here we investigated OS markers and histopathological changes in gills and hemolymph of Mediterranean mussels Mytilus galloprovincialis Lamarck, 1819 exposed to a wide range of salinities (6, 10, 14, 24, and 30 ppt). Mussels were captured at the shellfish farm with the salinity 18 ppt and then exposed to hypo- and hypersaline conditions in the laboratory. Indicators of redox balance in hemocytes (intracellular reactive oxygen species (ROS) levels, DNA damage) and gills (thiobarbituric acid reactive substances (TBARS), protein carbonyls (PC), activity of catalase (CAT), superoxide dismutase (SOD) and glutathione peroxidase (GPx) were measured. The effect of salinity stress on microstructure of gills has been evaluated as well. The results revealed induction of OS in tissues and cells of mussels for both experimental increase and decrease salinity modelings. Hemocytes showed higher sensitivity to osmotic stress compared to gills. In gills TBARS were stable in all experimental groups and PC increased only at salinity 6 ppt. The activity of SOD, CAT and GPx in gills decreased only in mussels acclimated to salinity 24 ppt and further salinisation up to 30 ppt was associated with the recovery of the activity of all enzymes. Major histopathological changes in gills upon salinity fluctuations included inflammatory reactions, circulatory alterations, regressive and progressive changes. Our findings clearly indicate that salinity fluctuations promote OS at cellular and tissue level and also affect microstructure of gills in mussels. The results provide new insights into the mechanisms of osmotic stress in bivalves.

摘要

双壳贝类经常经历盐度波动,这可能会在生物体内引发氧化应激(OS)。在此,我们研究了1819年拉马克描述的地中海贻贝(Mytilus galloprovincialis Lamarck)在暴露于广泛盐度范围(6、10、14、24和30 ppt)时,鳃和血淋巴中的氧化应激标志物以及组织病理学变化。贻贝在盐度为18 ppt的贝类养殖场捕获,然后在实验室中暴露于低盐和高盐环境。测量了血细胞(细胞内活性氧(ROS)水平、DNA损伤)和鳃(硫代巴比妥酸反应性物质(TBARS)、蛋白质羰基(PC)、过氧化氢酶(CAT)、超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GPx)活性)中的氧化还原平衡指标。还评估了盐度胁迫对鳃微观结构的影响。结果显示,在实验性盐度升高和降低模拟中,贻贝的组织和细胞均出现了氧化应激诱导。与鳃相比,血细胞对渗透胁迫表现出更高的敏感性。在鳃中,TBARS在所有实验组中均保持稳定,PC仅在盐度为6 ppt时增加。鳃中SOD、CAT和GPx的活性仅在适应盐度24 ppt的贻贝中降低,进一步盐化至30 ppt与所有酶活性的恢复有关。盐度波动时鳃的主要组织病理学变化包括炎症反应、循环改变、退行性和进行性变化。我们的研究结果清楚地表明,盐度波动会在细胞和组织水平上促进氧化应激,并且还会影响贻贝鳃的微观结构。这些结果为双壳贝类渗透胁迫机制提供了新的见解。

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