Green nanotechnology for controlling bacterial load and heavy metal accumulation in Nile tilapia fish using biological selenium nanoparticles biosynthesized by Bacillus subtilis AS12

Faculty Agriculture Year: 2022
Type of Publication: ZU Hosted Pages:
Authors:
Journal: Frontiers in Microbiolgy Frontiers Volume:
Keywords : Green nanotechnology , controlling bacterial load , heavy    
Abstract:
Heavy metal accumulation and pathogenic bacteria cause adverse effects on aquaculture. The active surface of selenium (Se) nanoparticles can mitigate these effects. The present study used Se-resistant Bacillus subtilis AS12 to fabricate biological Se nanoparticles (Bio-SeNPs). The double-edged Bio-SeNPs were tested for their ability to reduce the harmful effects of heavy metals and bacterial load in Nile tilapia (Oreochromis niloticus) and their respective influences on fish growth, behavior, and health. The Bio-SeNPs have a spherical shape with an average size of 77 nm and high flavonoids and phenolic content (0.7 and 1.9 g g−1 quercetin and gallic acid equivalents, respectively), resulting in considerable antioxidant and antibacterial activity. The Bio-SeNPs (3–5 μg ml−1) in the current study resolved two serious issues facing the aquaculture industry, firstly, the population of pathogenic bacteria, especially Aeromonas hydrophilia, which was reduced by 28–45% in fish organs. Secondly, heavy metals (Cd and Hg) at two levels (1 and 2 μg ml−1) were reduced by 50–87% and 57–73% in response to Bio-SeNPs (3–5 μg ml−1). Thus, liver function parameters were reduced, and inner immunity was enhanced. The application of Bio-SeNPs (3–5 μg ml−1) improved fish gut health, growth, and behavior, resulting in fish higher weight gain by 36–52% and a 40% specific growth rate, compared to controls. Furthermore, feeding and arousal times increased by 20–22% and 28–53%, respectively, while aggression time decreased by 78% compared to the control by the same treatment. In conclusion, Bio-SeNPs can mitigate the accumulation of heavy metals and reduce the bacterial load in a concentration-dependent manner, either in the fish media or fish organs.
   
     
 
       

Author Related Publications

  • Ahmed Mohamed Saad Mousttafa, "Polyphenolic extracts from pomegranate and watermelon wastes as substrate to fabricate sustainable Silver nanoparticles with larvicidal effect against Spodoptera littoralis", دولي, 2021 More
  • Ahmed Mohamed Saad Mousttafa, "Impacts of Supplementing Broiler Diets with Biological Curcumin, Zinc Nanoparticles and Bacillus licheniformis on Growth, Carcass Traits, Blood Indices, Meat Quality and Cecal Microbial Load", MDPI, 2021 More
  • Ahmed Mohamed Saad Mousttafa, "Green nanotechnology for preserving and enriching yogurt with biologically available iron (II)", Elsevier, 2021 More
  • Ahmed Mohamed Saad Mousttafa, "Selenium nanoparticles from Lactobacillus paracasei HM1 capable of antagonizing animal pathogenic fungi as a new source from human breast milk", Elsevier, 2021 More
  • Ahmed Mohamed Saad Mousttafa, "Phytogenic compounds from avocado (Persea americana L.) extracts; antioxidant activity, amylase inhibitory activity, therapeutic potential of type 2 diabetes", elsevier, 2021 More

Department Related Publications

  • Mohammed Mahmoud Alswedy , "Effect of Vitamin E , Probucol& Lovastatin on Oxid Status Aortic fatty lesions in Hyperlipidemic-diabetic ", لايوجد, 1900 More
  • Mohammed Mahmoud Alswedy , "Matabolic effects of Desogestrel-Ethinyl estradiol combination (Marvelon) in rats", لايوجد, 1900 More
  • Abdelaleim Ismail Ibrahim ElSayed, "Physiological aspects of raffinose family oligosaccharides (RFOs) in plants: Protection against abiotic stress.", Wiley, 2014 More
  • Abdelaleim Ismail Ibrahim ElSayed, "Molecular Identification and Phylogenetic Analysis of Sugarcane Yellow Leaf Phytoplasma (SCYLP) in Egypt", Wiley, 2014 More
  • Abdelaleim Ismail Ibrahim ElSayed, "Molecular marker assisted for recognition drought tolerant in some of bread wheat genotypes", Springer, 2012 More
Tweet