Abstract

Climate change impact has disturbed the rainfall pattern worsening the problems of water availability in the aquatic ecosystem of India and other parts of the world. Arsenic pollution, mainly through excessive use of groundwater and other anthropogenic activities, is aggravating in many parts of the world, particularly in South Asia. We evaluated the efficacy of selenium nanoparticles (Se-NPs) and riboflavin (RF) to ameliorate the adverse impacts of elevated temperature and arsenic pollution on growth, anti-oxidative status and immuno-modulation in Pangasianodon hypophthalmus. Se-NPs were synthesized using fish gill employing green synthesis method. Four diets i.e., Se-NPs (0 mg kg−1) + RF (0 mg kg−1); Se-NPs (0.5 mg kg−1) + RF (5 mg kg−1); Se-NPs (0.5 mg kg−1) + RF (10 mg kg−1); and Se-NPs (0.5 mg kg−1) + RF (15 mg kg−1) were given in triplicate in a completely randomized block design. The fish were treated in arsenic (1/10th of LC50, 2.68 mg L−1) and high temperature (34 °C). Supplementation of the Se-NPs and RF in the diets significantly (p < 0.01) enhanced growth performance (weight gain, feed efficiency ratio, protein efficiency ratio, and specific growth rate), anti-oxidative status and immunity of the fish. Nitroblue tetrazolium (NBT), total immunoglobulin, myeloperoxidase and globulin enhanced (p < 0.01) with supplementation (Se-NPs + RF) whereas, albumin and albumin globulin (A:G) ratio (p < 0.01) reduced. Stress biomarkers such as lipid peroxidation in the liver, gill and kidney, blood glucose, heat shock protein 70 in gill and liver as well as serum cortisol reduced (p < 0.01) with supplementation of Se-NPs and RF, whereas, acetylcholine esterase and vitamin C level in both brain and muscle significantly enhanced (p < 0.01) in compared to control and stressors group (As + T) fed with control diet. The fish were treated with pathogenic bacteria after 90 days of experimental trial to observe cumulative mortality and relative survival for a week. The arsenic concentration in experimental water and bioaccumulation in fish tissues was also determined, which indicated that supplementation of Se-NPs and RF significantly reduced (p < 0.01) bioaccumulation. The study concluded that a combination of Se-NPs and RF has the potential to mitigate the stresses of high temperature and As pollution in P. hypophthalmus.

Highlights

  • Climate change impact has disturbed the rainfall pattern worsening the problems of water availability in the aquatic ecosystem of India and other parts of the world

  • The supplemented dietary selenium nanoparticles (Se-NPs) and RF prevented the effects of multiple stresses and reduced cortisol level (Fig. 2A) in comparison to the control group and concurrent exposure to arsenic and temperature and fed with the control diet group

  • The activities of CAT, GST and glutathione peroxidase (GPx) were significantly higher in the combined stressor groups (As + T) fed with a control diet compared to stressor groups (As + T) fed with combinatorial mixture of Se-NP and RF

Read more

Summary

Introduction

Climate change impact has disturbed the rainfall pattern worsening the problems of water availability in the aquatic ecosystem of India and other parts of the world. We evaluated the efficacy of selenium nanoparticles (Se-NPs) and riboflavin (RF) to ameliorate the adverse impacts of elevated temperature and arsenic pollution on growth, anti-oxidative status and immuno-modulation in Pangasianodon hypophthalmus. The altered temperature and hazardous metals disturb the homeostasis of aquatic animals leading to reduced growth, compromised ­immunity[1,2], decreased anti-oxidative status and pathogenic r­ esistance[1] posing a serious threat to their early stages of the life of f­ishes[3,4]. Riboflavin (RF) and selenium nanoparticles (Se-NPs) have been used to reduce the effects of multiple stressors (arsenic pollution and elevated temperature) and enhance growth performance and immunity of the ­fishes[20]. The flavin mononucleotide (FMN) and flavin adenine dinucleotide (FAD) are two active forms of riboflavin that play a crucial role in various oxidation and reduction ­reactions[24]

Methods
Results
Discussion
Conclusion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call