Related Experiment Video
Updated: May 3, 2026

Mass-Rearing and Molecular Studies in Tortricidae Pest Insects
Published on: March 25, 2022
Toxic Effect of Methyl-Thiophanate on Bombyx mori Based on Physiological and Transcriptomic Analysis
Zhen He1, Yang Fang2, Fengchao Zhang2
1Industrial Crops Institute, Hubei Academy of Agricultural Sciences, Wuhan 430064, China.
Background/Objectives:
The utilization of methyl-thiophanate (MT) in vegetables and fruits is widespread due to its broad efficiency, yet its potential impact on silkworm growth remains uncertain. This study aims to examine the effects of MT on the growth of silkworms. Specifically, we assessed the weights of fifth-instar larvae that were fed mulberry leaves saturated with three concentrations (2.5, 5, and 10 mg/mL) of MT, as well as the weights of a control group.
Methods:
TEM was used to show the status of the silkworm midgut after MT supplementation. Oxidative stress was evaluated in the presence of MT. Furthermore, a transcriptomic sequencing experiment was conducted to investigate the mechanism through which the development of silkworms is induced by MT.
Results:
Our findings indicate that the supplementation of MT hindered larval growth compared to the control group, suggesting a toxic effect of MT on silkworms. The transmission electron microscopy (TEM) results show that MT supplementation induced autophagy in the silkworm midgut. MT was also found to induce oxidative stress in silkworms through the activation of reactive oxygen (ROS), superoxide dismutase (SOD), catalase (CAT), and peroxidase (POD) activities. Subsequent transcriptomic analysis revealed 1265 significantly differentially expressed genes (DEGs) in response to MT. Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis indicated that these DEGs were associated with antioxidant defense, detoxification processes, lysosome biogenesis, and metabolic pathways.
Conclusions:
These findings suggest that MT toxicity in silkworm larvae is mediated through the induction of oxidative stress and alterations in metabolism. This study contributes to our understanding of the impacts of MT exposure on silkworms and provides insights into potential pesticides for use in mulberry gardens.
Insights
Methyl-thiophanate (MT) negatively impacts silkworm growth, causing toxicity through oxidative stress and metabolic changes. This research highlights MT
Area of Science:
- Agronomy and Crop Protection
- Toxicology and Ecotoxicology
- Sericulture and Insect Physiology
Background:
- Methyl-thiophanate (MT) is a widely used pesticide in agriculture.
- Its effects on non-target organisms like silkworms are not well understood.
- Silkworms are crucial for silk production, making their health vital.
Purpose of the Study:
- To investigate the impact of methyl-thiophanate (MT) on silkworm growth and development.
- To elucidate the underlying mechanisms of MT toxicity in silkworms.
- To assess the safety of MT use in mulberry cultivation areas.
Main Methods:
- Silkworms were fed mulberry leaves treated with varying concentrations of MT (2.5, 5, 10 mg/mL).
- Transmission Electron Microscopy (TEM) examined midgut tissue.
- Oxidative stress markers (ROS, SOD, CAT, POD) and gene expression (transcriptomics) were analyzed.
Main Results:
- MT significantly inhibited silkworm larval growth, indicating toxicity.
- MT induced autophagy and oxidative stress in the silkworm midgut.
- Transcriptomic analysis identified 1265 differentially expressed genes related to antioxidant defense and metabolism.
Conclusions:
- MT toxicity in silkworms is linked to induced oxidative stress and metabolic pathway alterations.
- Findings provide insights into the risks of MT exposure for silkworms.
- This study informs the selection of safer pesticides for mulberry cultivation.
More Related Videos
06:58Author Spotlight: Evaluation of Entomopathogenic Fungi in Wild Monochamus alternatus Populations for Biocontrol Applications in Forest Wood Borers
Published on: September 29, 2023
05:36Author Spotlight: Advancing Gene Silencing Research in Silkworms with dsRNA Delivery Through Feeding Chitosan Nanoparticles
Published on: October 4, 2024
Related Concept Videos
Types of Toxins
Air pollutants, primarily gases, pose significant threats to respiratory health, leading to conditions like hypoxia, lung cancer, and in extreme cases, death.
Environmental pollutants like...
Toxic Reactions: Overview
Toxicity falls into two primary categories: local and systemic.
Local toxicity appears at the exposure site, such as protein denaturation caused by caustic substances.
In contrast, systemic toxicity requires the toxic agent's absorption and distribution,...
Bioactivation and Tissue Toxicity
Toxicity Testing in Animals
Production of Biopesticides