Evaluation of The Pathogenic Potential of Insecticidal Serratia marcescens Strains to Humans

Edyta Konecka1, Joanna Mokracka1, Sylwia Krzymińska1

  • 1Department of Microbiology, Faculty of Biology, Adam Mickiewicz University in Poznań , Poland.

Insights

Serratia marcescens exhibits insecticidal properties against Spodoptera exigua, showing potential as a bioinsecticide. However, these strains also demonstrate pathogenicity to human cells and antibiotic resistance, necessitating safety assessments before use in biocontrol.

Area of Science:

  • Microbiology
  • Entomology
  • Toxicology

Background:

  • Insect pests like Spodoptera exigua cause significant agricultural damage.
  • The development of novel bioinsecticides is crucial for sustainable pest management.
  • Serratia marcescens has been identified as a potential agent for insect control.

Purpose of the Study:

  • To investigate the insecticidal activity of Serratia marcescens against Spodoptera exigua.
  • To evaluate the pathogenic properties of S. marcescens strains to mammalian cells.
  • To assess the antibiotic resistance profile of S. marcescens isolates for biocontrol applications.

Main Methods:

  • Laboratory culture and controlled exposure of Spodoptera exigua larvae to S. marcescens isolates.
  • Determination of Lethal Concentration 50 (LC50) values.
  • Cytotoxicity assays using Vero cells to assess pathogenicity.
  • Antimicrobial susceptibility testing and analysis of resistance genes.

Main Results:

  • Serratia marcescens demonstrated significant insecticidal activity and high mortality rates in Spodoptera exigua larvae.
  • All tested S. marcescens strains exhibited cytopathic effects on Vero cells, indicating pathogenicity to mammalian epithelial cells.
  • Isolates displayed resistance to multiple antibiotics, including sulfamethoxazole, tobramycin, gentamicin, cefepime, and aztreonam, with sul1 or sul2 genes identified as responsible for sulfamethoxazole resistance.

Conclusions:

  • Novel S. marcescens strains possess high pesticidal activity, making them candidates for bioinsecticide development.
  • The pathogenicity to human cells and antibiotic resistance of these strains pose risks for human health and raise concerns about the spread of resistance genes.
  • Thorough safety evaluations for vertebrate toxicity are essential before utilizing bacterial biocontrol agents.

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