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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.
Abstract:
We observed the death of insect caterpillars of Spodoptera exigua in the laboratory culture line and identified Serratia marcescens as the bacterial causative agent of the insect death. We confirmed that S. marcescens had insecticidal activity against S. exigua and caused high mortality of larvae. The LC50 values of S. marcescens CFU per 1 cm2 of insect diet surface were similar for all isolates. Our research reports novel strains with high pesticidal activity as candidates for future research on a new bioinsecticide. As bioinsecticides cannot be harmful to non-target organisms, we determined the pathogenic properties of S. marcescens to humans. We proved the ability of S. marcescens to damage mammalian epithelial cells. All strains had cytopathic effects to Vero cells with a cytotoxic index ranging from 51.2% ± 3.8% to 79.2% ± 4.1%. We found that all of the strains excreted catecholate siderophore - enterobactin. All isolates were resistant to sulfamethoxazole, tobramycin, gentamicin, cefepime, and aztreonam. We did not observe the ESBL phenotype and the integrons' integrase genes. Resistance to sulfamethoxazole was due to the presence of the sul1 or sul2 gene. The use of resistant S. marcescens strains that are pathogenic to humans in plant protection may cause infections difficult to cure and lead to the spread of resistance genes. The results of our study emphasize the necessity of determination of the safety to vertebrates of the bacteria that are proposed to serve as biocontrol agents. The novelty of our study lies in the demonstration of the indispensability of the bacteria verification towards the lack of hazardous properties to humans.
Abstract:
We observed the death of insect caterpillars of Spodoptera exigua in the laboratory culture line and identified Serratia marcescens as the bacterial causative agent of the insect death. We confirmed that S. marcescens had insecticidal activity against S. exigua and caused high mortality of larvae. The LC50 values of S. marcescens CFU per 1 cm2 of insect diet surface were similar for all isolates. Our research reports novel strains with high pesticidal activity as candidates for future research on a new bioinsecticide. As bioinsecticides cannot be harmful to non-target organisms, we determined the pathogenic properties of S. marcescens to humans. We proved the ability of S. marcescens to damage mammalian epithelial cells. All strains had cytopathic effects to Vero cells with a cytotoxic index ranging from 51.2% ± 3.8% to 79.2% ± 4.1%. We found that all of the strains excreted catecholate siderophore – enterobactin. All isolates were resistant to sulfamethoxazole, tobramycin, gentamicin, cefepime, and aztreonam. We did not observe the ESBL phenotype and the integrons’ integrase genes. Resistance to sulfamethoxazole was due to the presence of the sul1 or sul2 gene. The use of resistant S. marcescens strains that are pathogenic to humans in plant protection may cause infections difficult to cure and lead to the spread of resistance genes. The results of our study emphasize the necessity of determination of the safety to vertebrates of the bacteria that are proposed to serve as biocontrol agents. The novelty of our study lies in the demonstration of the indispensability of the bacteria verification towards the lack of hazardous properties to humans.
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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