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Published on: May 21, 2020
Transcriptomic responses in ham mite (Tyrophagus putrescentiae) to propylene glycol exposure
Joseph Hinton1, Isa Maria Reynoso1, Sawyer W Smith1
1Department of Biochemistry, Nutrition, and Health Promotion, Mississippi State University, Mississippi, MS, USA.
Abstract:
Tyrophagus putrescentiae, commonly referred to as the ham or cheese mite, are tiny arachnid pests that infest dry-cured hams and aged cheeses. Previous studies have indicated that propylene glycol (PG) is a safe and effective treatment for control of ham mite infestations in laboratory-scale experiments. Mixed-sex mites were inoculated on ham cubes that were dipped in PG (n = 6), while untreated ham cubes served as the control (n = 6). After incubation for 72 h at 25 ± 2° C and 70 ± 5% RH, mites from each treatment group were pooled and RNA-seq was used to characterize mite transcriptomes and check for differences in gene expression. Out of 19,199 annotated genes, approximately 64% were functionally annotated. In total, 649 genes were differentially expressed (p < 0.05, log2 fold change < - 1 or > 1) due to PG exposure, with 74 genes upregulated and 575 downregulated. Functional enrichment analysis revealed that there were 14 pathways and 21 gene ontology (GO) terms significantly over-represented in the differentially expressed genes, indicating that PG exposure affects genes involved in degradation, detoxification, glycolysis, and gluconeogenesis, and suggests that ham mites are deterred by PG, resulting in starvation and the mite's eventual death. However, the toxicity of PG from consumption has not yet been proven and requires further experimentation.
Insights
Propylene glycol (PG) effectively controls ham mites (Tyrophagus putrescentiae) by altering gene expression related to metabolism and detoxification. This suggests PG deters mites, leading to starvation and death, though consumption toxicity requires further study.
Area of Science:
- Agricultural Science
- Pest Management
- Molecular Biology
Background:
- Tyrophagus putrescentiae, or ham mites, are significant pests of dry-cured meats and cheeses.
- Propylene glycol (PG) has shown promise in laboratory settings for controlling mite infestations.
Purpose of the Study:
- To investigate the molecular mechanisms underlying the effect of propylene glycol (PG) on ham mite gene expression.
- To assess the potential of PG as a control agent for Tyrophagus putrescentiae.
Main Methods:
- Ham mites were exposed to PG on ham cubes in a controlled laboratory environment.
- RNA sequencing (RNA-seq) was employed to analyze differential gene expression in response to PG treatment.
- Functional enrichment analysis identified affected biological pathways and gene ontology (GO) terms.
Main Results:
- PG exposure significantly altered the expression of 649 genes in ham mites.
- Downregulation was observed in 575 genes, while 74 genes were upregulated.
- Affected pathways included degradation, detoxification, glycolysis, and gluconeogenesis.
Conclusions:
- Propylene glycol (PG) exposure impacts key metabolic and detoxification pathways in ham mites.
- The observed gene expression changes suggest PG deters mites, potentially leading to starvation and death.
- Further research is needed to confirm the toxicity of PG upon consumption by mites.

