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丁香酚对模拟运输条件下大黄鱼幼鱼水质、代谢及抗氧化能力的影响

Effects of Eugenol on Water Quality and the Metabolism and Antioxidant Capacity of Juvenile Greater Amberjack () under Simulated Transport Conditions.

作者信息

He Yuhang, Fu Zhengyi, Dai Shiming, Yu Gang, Guo Yunfeng, Ma Zhenhua

机构信息

Sanya Tropical Fisheries Research Institute, Sanya 572018, China.

Hainan Provincial Key Laboratory of Efficient Utilization and Processing of Marine Fishery Resources, Sanya 572018, China.

出版信息

Animals (Basel). 2022 Oct 21;12(20):2880. doi: 10.3390/ani12202880.

Abstract

This study investigated the effects of added eugenol on water quality and the metabolism and antioxidant capacity of the liver and gills of the greater amberjack () during simulated transport. The juvenile fish (10.34 ± 1.33 g) were transported in sealed plastic bags containing different eugenol concentrations at a density of 24.79 kg/m for 8 h. The different eugenol concentrations were divided into five groups: 0 μL/mL (control group), 0.0125 μL/mL, 0.025 μL/mL, 0.0375 μL/mL, and 0.05 μL/mL, with three replicates of each. The results showed that 0.05 μL/mL of eugenol could significantly increase dissolved oxygen, but 0.025 μL/mL-0.0375 μL/mL resulted in a significant decrease in dissolved oxygen and significant increases in NH-N and NO-N. It was found that 0.05 μL/mL of eugenol caused significant up-regulation of the relative expression of CPT-1 in the liver, significant down-regulation of the relative expression of FAS and PK in the liver and gills, a significant increase in glycogen concentration, and a significant decrease in glucose concentration. This suggests that 0.05 μL/mL of eugenol could reduce the metabolic capacity of fish. In addition, 0.05 μL/mL of eugenol caused significant up-regulation of the relative expression of CAT and a significant decrease of MDA concentration in the liver. Meanwhile, the gills showed significant up-regulation of CAT relative expression, significant down-regulation of Keap1 relative expression, and a significant increase in GSH activity, resulting in a significant increase in MDA concentration when the concentration of eugenol reached or exceeded 0.025 μL/mL. This suggests that 0.05 μL/mL eugenol could improve the antioxidant capacity of fish and lipid peroxidation levels in the gills. In conclusion, the addition of 0.05 μL/mL eugenol could improve water quality, and the metabolic and antioxidant capacities of liver and gills, but it could also increase lipid peroxidation levels in the gills under transport conditions.

摘要

本研究调查了在模拟运输过程中添加丁香酚对条纹鲈肝脏和鳃的水质、代谢及抗氧化能力的影响。将幼鱼(10.34±1.33克)以24.79千克/立方米的密度置于含有不同丁香酚浓度的密封塑料袋中运输8小时。不同丁香酚浓度分为五组:0微升/毫升(对照组)、0.0125微升/毫升、0.025微升/毫升、0.0375微升/毫升和0.05微升/毫升,每组设三个重复。结果表明,0.05微升/毫升丁香酚可显著增加溶解氧,但0.025微升/毫升至0.0375微升/毫升会导致溶解氧显著降低,NH-N和NO-N显著增加。研究发现,0.05微升/毫升丁香酚可使肝脏中CPT-1的相对表达显著上调,肝脏和鳃中FAS和PK的相对表达显著下调,糖原浓度显著增加,葡萄糖浓度显著降低。这表明0.05微升/毫升丁香酚可降低鱼类的代谢能力。此外,0.05微升/毫升丁香酚可使肝脏中CAT的相对表达显著上调,MDA浓度显著降低。同时,鳃中CAT相对表达显著上调,Keap1相对表达显著下调,GSH活性显著增加,当丁香酚浓度达到或超过0.025微升/毫升时,MDA浓度显著增加。这表明0.05微升/毫升丁香酚可提高鱼类的抗氧化能力及鳃中的脂质过氧化水平。总之,添加0.05微升/毫升丁香酚可改善水质、肝脏和鳃的代谢及抗氧化能力,但在运输条件下也可能增加鳃中的脂质过氧化水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2450/9598218/1ee2728cd222/animals-12-02880-g001.jpg

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