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Updated: Jan 31, 2026

Author Spotlight: Efficient Venom Extraction Method from Trichogramma Parasitoid Wasps
Published on: October 6, 2023
Insights into the venom protein components of Microplitis mediator, an endoparasitoid wasp
Zhe Lin1, Rui-Juan Wang2, Yang Cheng3
1State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
Abstract:
Endoparasitoid wasps deliver a variety of maternal factors, such as venom proteins, viruses, and virus-like particles, from their venom and calyx fluid into hosts and thereby regulate the hosts' immune response, metabolism and development. The endoparasitoid, Microplitis mediator, is used as an important biological agent for controlling the devastating pest Helicoverpa armigera. In this study, using an integrated transcriptomic and proteomic analysis approach, we identified 75 putative venom proteins in M. mediator. The identified venom components were consistent with other known parasitoid wasps' venom proteins, including metalloproteases, serine protease inhibitors, and glycoside hydrolase family 18 enzymes. The metalloprotease and serpin family showed extensive gene duplications in venom apparatus. Isobaric tags for relative and absolute quantitation (iTRAQ) based quantitative proteomics revealed 521 proteins that were differentially expressed at 6 h and 24 h post-parasitism, including 10 wasp venom proteins that were released into the host hemolymph. Further analysis indicated that 511 differentially expressed proteins (DEP) from the host are primarily involved in the immune response, material metabolism, and extracellular matrix receptor interaction. Taken together, our results on parasitoid wasp venoms have the potential to enhance the application of endoparasitoid wasps for controlling insect pest.
Insights
Microplitis mediator venom proteins were identified, revealing key components that modulate host immune and metabolic processes. This research enhances biological control strategies against the pest Helicoverpa armigera.
Area of Science:
- Insect biology
- Biochemistry
- Molecular entomology
Background:
- Endoparasitoid wasps utilize venom and calyx fluid to manipulate host physiology.
- Microplitis mediator is a biological control agent for the pest Helicoverpa armigera.
Purpose of the Study:
- To identify venom proteins of Microplitis mediator.
- To investigate host protein expression changes post-parasitism.
- To understand venom's role in host manipulation for pest control.
Main Methods:
- Integrated transcriptomic and proteomic analysis.
- Isobaric tags for relative and absolute quantitation (iTRAQ) for quantitative proteomics.
- Analysis of host differentially expressed proteins (DEP) post-parasitism.
Main Results:
- Identified 75 putative venom proteins in M. mediator, including metalloproteases and serpins.
- Quantified 521 differentially expressed proteins in the host at 6h and 24h post-parasitism.
- Found 10 venom proteins in host hemolymph and identified host DEP involved in immunity and metabolism.
Conclusions:
- M. mediator venom contains diverse proteins that impact host immunity and metabolism.
- Understanding these venom components can improve biological control of Helicoverpa armigera.
- This study provides insights into parasitoid-host interactions and venom evolution.
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