Hysterical tetracycline in intensive poultry farms accountable for substantial gene resistance, health and ecological risk in Egypt- manure and fish

Environ Pollut. 2019 Dec;255(Pt 1):113039. doi: 10.1016/j.envpol.2019.113039. Epub 2019 Aug 17.

Abstract

Although the poultry production sector plays a key role in sustaining the majority of animal protein demand in Egypt, the deleterious effects of widespread antibiotic resistance on health and environment are currently not well recognized. Litter and dropping samples from broiler and layer poultry farms as well as, tilapia samples from the Nile River and aquaculture farms were collected from Upper Egypt. Samples were extracted and examined for tetracycline residues [tetracycline (TC), chlortetracycline (CTC), oxytetracycline (OTC) and doxycycline (DC)] using HPLC. In addition, tetracycline resistance genes [tet (M), tet (W), tet (Q) and tet (G)] were screened from pooled intestinal contents collected from twelve broiler farms in Upper Egypt. The antibiotic resistance genes results revealed that tet (W) was confirmed to be expressed in all intestinal samples. In contrast, tet (Q) and tet (M) were detected only in 42% and 17% of the samples, respectively. CTC and OTC were the antimicrobial compounds with the highest concentrations in poultry litter and droppings, with concentrations of 6.05 and 2.47 μg g-1 (CTC) and 5.9 and 1.33 μg g-1 (OTC), respectively. However, the concentrations of DC were significantly higher than those of the other compounds in both aquaculture and Nile River tilapia. The tetracycline residue levels in aquaculture tilapia were significantly higher than those in Nile River tilapia. The hazard quotients (HQs) exceeded 1 for OTC, CTC and DC, which highlights the great risk of using broiler litter to fertilize agricultural land. Moreover, the presence of DC and CTC indicates that consumption of aquaculture tilapia poses a considerable health risk. Therefore, poultry litter or droppings containing tetracycline residues and tet resistance determinants used for aquaculture or as farmland fertilizers could be major sources of antibiotic resistance in fish, humans and environment.

Keywords: Environment risk assessment; Hazard quotients (HQs); Oreochromis niloticus; Poultry manure; tet (M) tet (W); tet (Q) and tet (G).

MeSH terms

  • Animals
  • Anti-Bacterial Agents / analysis*
  • Aquaculture
  • Chickens / growth & development*
  • Ecology
  • Egypt
  • Farms
  • Fertilizers
  • Gastrointestinal Contents / chemistry
  • Gastrointestinal Contents / microbiology
  • Manure / analysis
  • Manure / microbiology
  • Muscles / chemistry
  • Poultry
  • Risk Assessment
  • Seafood / analysis
  • Tetracycline / analysis*
  • Tetracycline Resistance / genetics*
  • Tilapia / growth & development*
  • Veterinary Drugs / analysis*

Substances

  • Anti-Bacterial Agents
  • Fertilizers
  • Manure
  • Veterinary Drugs
  • Tetracycline