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纳米锌增强非特异性免疫的基因调控和抗氧化状态,以减轻鱼类的多种应激。

Nano‑zinc enhances gene regulation of non‑specific immunity and antioxidative status to mitigate multiple stresses in fish.

机构信息

ICAR-National Institute of Abiotic Stress Management, Malegaon, Baramati, Pune, 413115, India.

ICAR-Central Institute of Fisheries Education, Kolkata Center, Kolkata, 700091, India.

出版信息

Sci Rep. 2023 Mar 28;13(1):5015. doi: 10.1038/s41598-023-32296-y.

Abstract

The toxicity of ammonia surged with arsenic pollution and high temperature (34 °C). As climate change enhances the pollution in water bodies, however, the aquatic animals are drastically affected and extinct from nature. The present investigation aims to mitigate arsenic and ammonia toxicity and high-temperature stress (As + NH + T) using zinc nanoparticles (Zn-NPs) in Pangasianodon hypophthalmus. Zn-NPs were synthesized using fisheries waste to developing Zn-NPs diets. The four isonitrogenous and isocaloric diets were formulated and prepared. The diets containing Zn-NPs at 0 (control), 2, 4 and 6 mg kg diets were included. Superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPx) and glutathione-s-transferase (GST) were noticeably improved using Zn-NPs diets in fish reared under with or without stressors. Interestingly, lipid peroxidation was significantly reduced, whereas vitamin C and acetylcholine esterase were enhanced with supplementation of Zn-NPs diets. Immune-related attributes such as total protein, globulin, albumin, myeloperoxidase (MPO), A:G ratio, and NBT were also improved with Zn-NPs at 4 mg kg diet. The immune-related genes such as immunoglobulin (Ig), tumor necrosis factor (TNFα), and interleukin (IL1b) were strengthening in the fish using Zn-NPs diets. Indeed, the gene regulations of growth hormone (GH), growth hormone regulator (GHR1), myostatin (MYST) and somatostatin (SMT) were significantly improved with Zn-NPs diets. Blood glucose, cortisol and HSP 70 gene expressions were significantly upregulated by stressors, whereas the dietary Zn-NPs downregulated the gene expression. Blood profiling (RBC, WBC and Hb) was reduced considerably with stressors (As + NH + T), whereas Zn-NPs enhanced the RBC, WBC, and Hb count in fish reread in control or stress conditions. DNA damage-inducible protein gene and DNA damage were significantly reduced using Zn-NPs at 4 mg kg diet. Moreover, the Zn-NPs also enhanced the arsenic detoxification in different fish tissues. The present investigation revealed that Zn-NPs diets mitigate ammonia and arsenic toxicity, and high-temperature stress in P. hypophthalmus.

摘要

水体中氨氮毒性随砷污染和高温(34°C)而增加。然而,随着气候变化加剧水体污染,水生动物受到极大影响,在自然界中灭绝。本研究旨在利用水产养殖废弃物合成的锌纳米粒子(Zn-NPs)减轻 Pangasianodon hypophthalmus 中的砷和氨毒性以及高温胁迫(As+NH+T)。合成的锌纳米粒子用于开发含锌纳米粒子的饲料。制备了四种等氮等热量的饲料。饲料中分别含有 0(对照)、2、4 和 6mg/kg 饲料的 Zn-NPs。在有或没有胁迫因子的情况下,用含 Zn-NPs 的饲料喂养的鱼中超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、谷胱甘肽过氧化物酶(GPx)和谷胱甘肽-S-转移酶(GST)明显提高。有趣的是,脂质过氧化作用显著降低,而维生素 C 和乙酰胆碱酯酶则随 Zn-NPs 饲料的补充而提高。用含 4mg/kg 饲料的 Zn-NPs 喂养的鱼的免疫相关属性如总蛋白、球蛋白、白蛋白、髓过氧化物酶(MPO)、A:G 比和 NBT 也得到改善。免疫相关基因如免疫球蛋白(Ig)、肿瘤坏死因子(TNFα)和白细胞介素(IL1b)在使用 Zn-NPs 饲料的鱼中得到增强。事实上,生长激素(GH)、生长激素受体(GHR1)、肌肉生长抑制素(MYST)和生长抑素(SMT)的基因调控也因 Zn-NPs 饲料而显著改善。血糖、皮质醇和 HSP70 基因表达在胁迫下显著上调,而膳食 Zn-NPs 则下调基因表达。在有(As+NH+T)胁迫的情况下,血液分析(RBC、WBC 和 Hb)显著降低,而 Zn-NPs 则在控制或应激条件下增强了鱼的 RBC、WBC 和 Hb 计数。用 4mg/kg 饲料的 Zn-NPs 可显著降低 DNA 损伤诱导蛋白基因和 DNA 损伤。此外,Zn-NPs 还增强了 Pangasianodon hypophthalmus 不同组织中的砷解毒作用。本研究表明,Zn-NPs 饲料可减轻 Pangasianodon hypophthalmus 中的氨氮和砷毒性以及高温胁迫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79a7/10050481/242223c3976a/41598_2023_32296_Fig1_HTML.jpg

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