ICAR-National Institute of Abiotic Stress Management, Malegaon, Baramati, Pune, 413115, India.
Biol Trace Elem Res. 2023 Oct;201(10):4926-4950. doi: 10.1007/s12011-023-03575-6. Epub 2023 Jan 30.
Arsenic pollution, water temperature, and pH are the major concern for aquaculture. Moreover, the aim of the present investigation was to delineate the role of nano-copper (Cu-NPs) in the mitigation of arsenic toxicity, high temperature (34 °C) and low pH (6.5) stress on Pangasianodon hypophthalmus. Four isonitrogenous and isocaloric experimental diets of Cu-NPs at 0, 1.0, 1.5 and 2.0 mg kg were formulated and prepared. Arsenic pollution, low pH and high temperature stress significantly reduced the anti-oxidative status (super oxide dismutase, catalase, glutathione peroxidase and glutathione-s-transferase), lipid peroxidation, total anti-oxidative capacity and lipid profiling (cholesterol, total lipid, phospholipid, very low-density lipoprotein and triglyceride). Further, the supplementation of Cu-NPs at 1.5 and 1.0 mg kg diets noticeably improve the anti-oxidant status and capacity. The stressors groups (As + pH + T, As + T and As) significantly reduced fish immunity viz. albumin, globulin, total protein, albumin globulin ratio (A:G ratio), myeloperoxidase, respiratory burst activities, tumor necrosis factor, total immunoglobulin, and interleukin. Whereas supplementation of Cu-NPs at 1.5 and 1.0 mg kg diets improved the immunity of the fish reared under multiple stresses (As + pH + T). Tail DNA %, DNA damage-inducible protein (DDIP) and inducible nitric oxide (iNOS) synthase gene expression were significantly enhanced with exposure to arsenic, low pH and high temperature but supplementation of Cu-NPs protects the tissues against DNA damage and improved the gene expression of iNOS and DDIP. Cu-NPs at 1.5 and 1.0 mg kg diets significantly enhanced the body weight gain %, protein efficiency ratio, specific growth rate, daily growth index, relative feed intake and reduced the feed conversion ratio. Whereas, the growth-related gene expression such as myostatin (MYST), somatostatin (SMT) was downregulated by Cu supplementation and upregulated the gene expression of growth hormone regulator 1 and β (GHR1 and GHR β) and growth hormone (GH) gene in fish. Dietary Cu-NPs supplementation protects the fish against bacterial infection and enhances arsenic detoxification in different tissues. The present investigation revealed that supplementation of Cu-NPs at 1.5 and 1.0 mg kg diet has the potential to mitigate multiple stress (As + pH + T) in fish.
砷污染、水温、pH 值是水产养殖的主要关注点。此外,本研究旨在阐述纳米铜(Cu-NPs)在减轻砷毒性、高温(34°C)和低 pH(6.5)胁迫对 Pangasianodon hypophthalmus 的影响中的作用。本研究设计了四种等氮等热量的 Cu-NPs 实验饲料,分别为 0、1.0、1.5 和 2.0 mg/kg。砷污染、低 pH 值和高温胁迫显著降低了抗氧化状态(超氧化物歧化酶、过氧化氢酶、谷胱甘肽过氧化物酶和谷胱甘肽-S-转移酶)、脂质过氧化、总抗氧化能力和脂质谱(胆固醇、总脂质、磷脂、极低密度脂蛋白和甘油三酯)。此外,在 1.5 和 1.0 mg/kg 饮食中补充 Cu-NPs 显著改善了抗氧化状态和能力。胁迫组(As+pH+T、As+T 和 As)显著降低了鱼类的免疫力,如白蛋白、球蛋白、总蛋白、白蛋白球蛋白比(A:G 比)、髓过氧化物酶、呼吸爆发活性、肿瘤坏死因子、总免疫球蛋白和白细胞介素。而在多应激(As+pH+T)条件下,在 1.5 和 1.0 mg/kg 饮食中补充 Cu-NPs 可提高鱼类的免疫力。尾 DNA%、DNA 损伤诱导蛋白(DDIP)和诱导型一氧化氮合酶基因表达随着砷、低 pH 值和高温的暴露而显著增强,但 Cu-NPs 的补充可保护组织免受 DNA 损伤,并提高 iNOS 和 DDIP 的基因表达。在 1.5 和 1.0 mg/kg 饮食中添加 Cu-NPs 可显著提高体重增长率%、蛋白质效率比、特定生长率、日生长指数、相对饲料摄入量和降低饲料转化率。然而,Cu 补充会下调肌肉生长抑制素(MYST)、生长抑素(SMT)等与生长相关的基因表达,而上调生长激素调节因子 1 和β(GHR1 和 GHRβ)和生长激素(GH)基因的表达。饮食中添加 Cu-NPs 可保护鱼类免受细菌感染,并增强不同组织中砷的解毒能力。本研究表明,在 1.5 和 1.0 mg/kg 饮食中添加 Cu-NPs 具有减轻鱼类多种应激(As+pH+T)的潜力。