Division of Animal Biotechnology, Department of Agricultural Biotechnology, Agriculture Faculty, Akdeniz University, 07058, Antalya, Turkey.
Department of Agricultural Biotechnology, Agriculture Faculty, Ondokuz Mayıs University, 55139, Samsun, Turkey.
J Comp Physiol B. 2023 Aug;193(4):401-412. doi: 10.1007/s00360-023-01501-9. Epub 2023 Jun 7.
Commercially important trout species, especially rainbow trout, are under great threat due to several negative factors affecting oxygen levels in water such as global warming and eutrophication. In our study, rainbow trout (Oncorhynchus mykiss) was exposed to chronic (for 28 days) hypoxia (4.0 ± 0.5 mg/L) and hyperoxia (12 ± 1.2 mg/L) in order to evaluate the alteration of fatty acid profiles in muscle, liver and gill tissues. In addition, delta-6-desaturase and elongase gene expression profiles were measured in liver, kidney and gill tissues. The amount of saturated fatty acids increased by oxygen applications in the liver, while it decreased in the muscle and gill tissues compared to normoxia (p < 0.05). Monounsaturated fatty acids levels increased in muscle and gill (p < 0.05). Although n-3 polyunsaturated fatty acid (PUFA) decreased in muscle tissue, n-6 PUFA increased (p < 0.05). The n-3/n-6 ratio decreased in muscle tissue in response to the both exposures (p < 0.05) as well as eicosapentaenoic acid/docosahexaenoic acid ratio (p < 0.05). Hypoxia exposure generally increased delta-6-desaturase and elongase mRNA levels in all tissues (p < 0.05). However, gene expression profiles were variable in fish exposed to hyperoxia. As a result of oxygen exposures, the lipid profile of muscle tissue, which stores dense fat, was negatively affected more than that of liver and gill tissues. We determined that the change in expression levels was tissue specific.
商业上重要的鳟鱼物种,尤其是虹鳟,由于多种影响水体含氧量的负面因素而受到严重威胁,如全球变暖与富营养化。在我们的研究中,虹鳟(Oncorhynchus mykiss)被暴露于慢性(28 天)低氧(4.0±0.5mg/L)和高氧(12±1.2mg/L)条件下,以评估肌肉、肝脏和鳃组织中脂肪酸谱的变化。此外,还测量了肝脏、肾脏和鳃组织中 delta-6-去饱和酶和延伸酶基因的表达谱。与常氧相比,肝脏中饱和脂肪酸的含量因氧气应用而增加,而肌肉和鳃组织中则减少(p<0.05)。肌肉和鳃中单不饱和脂肪酸水平增加(p<0.05)。尽管肌肉组织中的 n-3 多不饱和脂肪酸(PUFA)减少,但 n-6 PUFA 增加(p<0.05)。n-3/n-6 比例因两种暴露而在肌肉组织中下降(p<0.05),以及二十碳五烯酸/二十二碳六烯酸比例(p<0.05)。低氧暴露通常会增加所有组织中的 delta-6-去饱和酶和延伸酶 mRNA 水平(p<0.05)。然而,高氧暴露下的基因表达谱是可变的。由于氧气暴露,储存密集脂肪的肌肉组织的脂质谱受到的负面影响大于肝脏和鳃组织。我们确定表达水平的变化是组织特异性的。